NPT Template ZTE 2G_Parameter_10-Oct-2012

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Telkomsel 2G BS No. Date Author Version 1

Transcript of NPT Template ZTE 2G_Parameter_10-Oct-2012

Page 1: NPT Template ZTE 2G_Parameter_10-Oct-2012

Telkomsel 2G BSS Parameter Change History

No Date Author Version

1

Telkomsel 2G BSS Parameter Change History

Remark

RG20 Parameters

Managed Object Parameter name Abbreviated name Parameter group

BSC BVC flow control supported BVCFlowCtrl BSC Level PS Part ParametBSC MS flow control supported MSFlowCtrl BSC Level PS Part ParametBSC Flow control mode FlowCtrlMode BSC Level PS Part ParametBSC BVC flow control R MIN valu BVCFlowCtrlRMin BSC Level PS Part ParametBSC BVC flow control threshold CellFcThs BSC Level PS Part ParametBSC MS flow control threshold MsFcThs BSC Level PS Part ParametBSC BVC flow control period CellFcPer BSC Level PS Part ParametBSC MS flow control period MsFcPer BSC Level PS Part ParametBSC NSVC peer to peer delay Delay BSC Level PS Part ParametBSC Cn Cn BSC Level PS Part ParametBSC Nn Nn BSC Level PS Part ParametBSC Xn Xn BSC Level PS Part ParametBSC MAX allowed number of continN3101 BSC Level PS Part ParametBSC Times of packet uplink ACK N3103 BSC Level PS Part ParametBSC MAX allowed number of contiN3105 BSC Level PS Part ParametBSC Dynamic HR enable DynaHREnable BSC Level CS Part ParametBSC Threshold for TRX switched HRThs BSC Level CS Part ParametBSC DCS1800PCS1900 SupporteFuncExt BSC Level CS Part ParametBSC Load indication allowed LoadInd BSC Level CS Part ParametBSC Send confusion message all ConfusionMsg BSC Level CS Part ParametBSC Inter-Cell handover allowed InHoEnable BSC Level CS Part ParametBSC Send assignment failure allo ExDRSendAssFail BSC Level CS Part ParametBSC Load indication valid time LoadValidTime BSC Level CS Part ParametBSC Load indication period LoadIndPrd BSC Level CS Part ParametBSC Automatic resource indicationResourceIndThs BSC Level CS Part ParametBSC Resource adjust threshold ResourceAdjustThs BSC Level PS Part ParametBSC BSC MAX reset number BSCMaxResetNum BSC Level CS Part ParametBSC Range of BARANG Range of BARANG Radio Basic PropertyBSC User label User label Basic PropertyBSC MCC MCC BSC Level CS Part ParametBSC Support MNC 3 digits MNC3Digits BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC OMP IP OMP_IP BSC Level CS Part ParametBSC OMP MAC OMP_MAC BSC Level CS Part ParametBSC OMC subnet mask Info4 BSC Level CS Part ParametBSC OMC Gateway (Info5) Info5 BSC Level CS Part ParametBSC OMC server subnet Info6 BSC Level CS Part ParametBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC Global time zone GlobalTimeZone BSC Level CS Part ParametBSC Net Type Net BSC Level CS Part ParametBSC SP Type SpType BSC Level CS Part ParametBSC Restart Flag Restart BSC Level CS Part ParametBSC Bureau No Bureau No BSC Level CS Part ParametBSC STPT18 stpT18 ms BSC Level CS Part ParametBSC SNTP SYNC cycle info10 BSC Level CS Part ParametBSC SNTP sever address Info9 BSC Level CS Part ParametBSC Test code TestCode BSC Level CS Part ParametBSC CPU thread tracing Info2 BSC Level CS Part ParametBSC Support PFC PFCSupport BSC Level PS Part ParametBSC BSC support page coordinati PagCoordination BSC Level PS Part ParametBSC R99 Ind R99Ind BSC Level PS Part Paramet

BSC RS RS BSC Level PS Part ParametBSC RR RR BSC Level PS Part ParametBSC RA RA BSC Level PS Part ParametBSC RM RM BSC Level PS Part ParametBSC RB RB BSC Level PS Part ParametBSC RG RG BSC Level PS Part ParametBSC RE RE BSC Level PS Part ParametBSC C C BSC Level PS Part ParametBSC NACC supported NACCSupport BSC Level PS Part ParametBSC BSCrsquos net operation mode NMO BSC Level PS Part ParametBSC Satellite transmission at Gb i IsStatelliteGB BSC Level PS Part ParametBSC Extended RLC send window aIsWindowExpend BSC Level PS Part ParametBSC Support TBF establish TBF_EST BSC Level PS Part ParametBSC Support signal extended upli SIGNAL_EUTBF BSC Level PS Part ParametBSC Resource pool for PS rate PsAbisThs BSC Level PS Part ParametBSC CS channel reserved time T4 BSC Level CS Part ParametBSC Downlink TBF retry DLTBFRetry BSC Level PS Part ParametBSC BVC blockunblock retry timeBssgpT1 BSC Level PS Part ParametBSC BVC reset retry time BssgpT2 BSC Level PS Part ParametBSC Suspend retry time BssgpT3 BSC Level PS Part ParametBSC Resume retry time BssgpT4 BSC Level PS Part ParametBSC Access capability update retr BssgpT5 BSC Level PS Part ParametBSC PFC creating retry time BssgpT6 BSC Level PS Part ParametBSC PFC modifying retry time BssgpT8 BSC Level PS Part ParametBSC Protection time for FUC chanccmT1 BSC Level PS Part ParametBSC Protection time for T-networkccmT2 BSC Level PS Part ParametBSC Protection time for LSP mov ccmT3 BSC Level PS Part ParametBSC MAX times of BVC block retr BVCBlkMax BSC Level PS Part ParametBSC MAX times of BVC unblock reBVCUblkMax BSC Level PS Part ParametBSC Timer that monitors the blockNS_T1 BSC Level PS Part ParametBSC Timer that monitors reset pr NS_T2 BSC Level PS Part ParametBSC NC-Cycle of NS-VC test procNS_T3 BSC Level PS Part ParametBSC MAX times of NS alive retry NSAliveMax BSC Level PS Part ParametBSC Timer that monitors alive pp NS_T4 BSC Level PS Part ParametBSC MAX attempt period of reset NS_T5 BSC Level PS Part ParametBSC TFI and USF release timer T3169 BSC Level PS Part ParametBSC TBF release timer T3191 BSC Level PS Part ParametBSC TBF release time of downlinkT3193 BSC Level PS Part ParametBSC TBF protect time when radio liT3195 BSC Level PS Part ParametBSC PS channel delay release timPSRelDelay BSC Level PS Part ParametBSC MAX times of BVC reset retryBVCRestMax BSC Level PS Part ParametBSC MAX times of NS block retry NSBlkMax BSC Level PS Part ParametBSC MAX times of NS unblock retrNSUnblkMax BSC Level PS Part ParametBSC MAX times of suspend retry SuspendMax BSC Level PS Part ParametBSC MAX times of resume retry ResumeMax BSC Level PS Part ParametBSC MAX times of radio access capUpdateMax BSC Level PS Part ParametBSC MAX times of PFC create retrDownLoadBssPFCMax BSC Level PS Part ParametBSC MAX times of PFC modify retModifyBssPFCMax BSC Level PS Part ParametBSC Blockingunblocking period T1 BSC Level CS Part ParametBSC Protective time for No7 signaT3 BSC Level CS Part ParametBSC Global Resetting Period T4 BSC Level CS Part ParametBSC Protection period for handoveT7 BSC Level CS Part ParametBSC Source BSC handover executiT8 BSC Level CS Part ParametBSC Assignment period T10 BSC Level CS Part ParametBSC Protection period for gobal reT13 BSC Level CS Part ParametBSC Circuit resetting period on B T19 BSC Level CS Part ParametBSC Circuit group blockingunblocT20 BSC Level CS Part Paramet

BSC RLSD message receive proteT9101 BSC Level CS Part ParametBSC Channel activation protectionrmsT9103 BSC Level CS Part ParametBSC Monitor clear command T9104 BSC Level CS Part ParametBSC SCCP connection protection tT9105 BSC Level CS Part ParametBSC External handover protection TT9113 BSC Level CS Part ParametBSC MSC clear command protectiormsT1 BSC Level CS Part ParametBSC Protective time for applying t rmsT2 BSC Level CS Part ParametBSC Protective time for link esta rmsT3 BSC Level CS Part ParametBSC Protective time for P0 conf rmsT4 BSC Level CS Part ParametBSC Encryption mode modificationrmsT5 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT1 BSC Level CS Part ParametBSC External handover protective rmsT8 BSC Level CS Part ParametBSC Protective time for RF channermsT9 BSC Level CS Part ParametBSC Queue period of assignment rmsT11 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT12 BSC Level CS Part ParametBSC Mode modification process ti rmsT13 BSC Level CS Part ParametBSC Protective time of UM assign rmsT14 BSC Level CS Part ParametBSC Time of destination instance rmsT15 BSC Level CS Part ParametBSC Waiting time for oriented retr rmsT16 BSC Level CS Part ParametBSC Queue period for handover rmsTqho BSC Level CS Part ParametBSC First Overload Period of Flow MT11 BSC Level CS Part ParametBSC Second Overload Period of FlMT12 BSC Level CS Part ParametBSC Time of Micro-Micro handoverTmicro BSC Level CS Part ParametBSC BSIC decoding period Tbsic BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Immediate assignment periodrmsT3101 BSC Level CS Part ParametBSC Handover period of source celrmsT3103 BSC Level CS Part ParametBSC Assignment period rmsT3107 BSC Level CS Part ParametBSC Channel release period rmsT3109 BSC Level CS Part ParametBSC Channel deactivation delay rmsT3111 BSC Level CS Part ParametBSC Continue Timer for mode modTModeModifyConn BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Reserved rate of EMLPP EmlppThs BSC Level CS Part ParametBSC Reserved Channel First Reserved Channel FirsteMLPPBSC User label User label Not RF relatedBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC User label User label GERAN External CellBSC External cell ID External cell ID GERAN External CellBSC Cell type CellType Cell Level Property ParametBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC Frequency band FreqBand Cell Level Property ParametBSC BCCH frequency BCCH frequency GERAN External CellBSC LAC LAC Operation Control ParameterBSC CI CI Operation Control ParameterBSC NCC NCC Cell Level Property ParametBSC BCC BCC Cell Level Property ParametBSC GPRS service supported PsSupport Cell Level PS Part ParameteBSC HSC exist HCS_EXIST GERAN External CellBSC Threshold of HSC signal leveHCS_THR GERAN External CellBSC HCS priority PrioClass GERAN External CellBSC Allow SOLSA MS to access EXC_ACC Cell Level PS Part ParameteBSC Cell reselection status CellBrAc2 External Cell ParametersBSC LSA ID LSA_ID Cell Level PS Part ParameteBSC RAC RAC Cell Level Property ParametBSC User label User label UTRAN External Cell

BSC External UTRAN ID EcUTRANId External Cell ParametersBSC UTRAN cell type CellTypeUTRAN External Cell ParametersBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC UTRAN cell Frequency ArfcnUTRAN External Cell ParametersBSC LAC LAC Operation Control ParameterBSC RNC ID RNC_Id External Cell ParametersBSC C ID C_Id External Cell ParametersBSC Scrambling code or Cell Par ScCodeCellPara External Cell ParametersBSC TX diversity indication DiverSity External Cell ParametersBSC AMR Half Active Codec Set AmrHalfAcs BSC Level CS Part ParametBSC Thresholds of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrICM BSC Level CS Part ParametBSC Start mode AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBSC AMR full Active Codec Set AmrFullAcs BSC Level CS Part ParametBSC Threshold of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrlCM BSC Level CS Part ParametBSC Startmode codec AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBTS CCCH Load Indication PeriodCcchLoadIndPrd Cell Level Function ParametBTS CCCH load indication (RACHCcchLoadINDThs_0 Cell Level Function ParametBTS CCCH load indication (PA CcchLoadINDThs_1 Cell Level Function ParametBTS Average bursts count surve AvgSlots Cell Level Function ParametBTS RACH Receiving signal level tRachBuysThs Cell Level Function ParametBTS Cell Type CellType Cell Level Property ParametBTS LAC LAC Operation Control ParameterBTS CI CI Operation Control ParameterBTS NCC NCC Cell Level Property ParametBTS BCC BCC Cell Level Property ParametBTS Frequency Band FreqBand Cell Level Property ParametBTS ARFCN list CaArfcnList Cell Level Property ParametBTS Common control channel confCcchConf Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS NSEI NSEI Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS Blocks for PAGCH in FramesBsAgBlkRes Cell Level Property ParametBTS TA Max TaMax Cell Level Function ParametBTS Access Control Level AccCtrlClass Cell Level Function ParametBTS Cell bar access CellBarAccess Cell SelectionBTS Cell bar qualify CellBarQualify Cell SelectionBTS MIN received signal level to RxLevAccessMin Cell Level Function ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Number of multiframes of th BsPaMframs Channel related ParametersBTS TA Allowed TaAllowed Cell Level Function ParametBTS Protection period for access T3122 Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS Control channel MAX power lMsTxPwrMaxCch Cell Level Function ParametBTS Number of slots to spread tr TxInteger Cell Level Function Paramet

BTS Downlink discontinuous transDtxDwlink Cell Level Function ParametBTS Uplink discontinuous transmi DtxUplinkBcch Cell Level Function ParametBSC Dynamic HR Enable DynaHREnable BSC Level CS Part ParametBTS New setup cause indication NECI Cell Level Function ParametBTS Use cell dynamic HR parametUseCellDynHRPara Cell Level Function ParametBTS Multiband report indication MulbandReport HO Related ParametersBTS Interval of SDCCH re-sendin T3105d HO Related ParametersBTS Number of zero allowed in A ZeroAllowed HO Related ParametersBTS Interval of TCH re-sending T3105f HO Related ParametersBTS Neighboring cell Sample counNCell HO Related ParametersBTS Preprocessing indication Preprocess HO Related ParametersBTS MIN interval between inter-ceHoMinInterval HO Related ParametersBTS Prior layer selecting parameteLayerPriority HO Related ParametersBTS Synchronization HoPatternInd1 HO Related ParametersBTS Asynchronization HoPatternInd2 HO Related ParametersBTS Pseudo-synchronization HoPatternInd3 HO Related ParametersBTS Pre-synchronization HoPatternInd4 HO Related ParametersBTS Allow SDCCH handover HoControl1 HO Related ParametersBTS Allow inter-cell handover atteHoControl2 HO Related ParametersBTS Allow inter-cell handover att HoControl3 HO Related ParametersBTS Allow handover due to distan HoControl4 HO Related ParametersBTS Allow standard PBGT handovHoControl5 HO Related ParametersBTS Allow automatic handover baseHoControl6 HO Related ParametersBTS Allow handover based on direHoControl7 HO Related ParametersBTS Allow handover based on homoHoControl8 HO Related ParametersBTS Allow intra-cell handover in HoControl9 HO Related ParametersBTS Allow intra-cell handover in HoControl10 HO Related ParametersBTS Allow adjacent cells handoveHoControl11 HO Related ParametersBTS Allow dynamic adjustment of HoControl12 HO Related ParametersBTS Allow rapid handover HoControl13 HO Related ParametersBTS Allow Macro-Micro delay hanHoControl14 HO Related ParametersBTS Allow Micro-Macro delay hanHoControl15 HO Related ParametersBTS Allow internal handover baseHoControl16 HO Related ParametersBTS Allow quality handover in upliHoControl19 HO Related ParametersBTS Allow level handover in uplinkHoControl20 HO Related ParametersBTS Allow quality handover in dowHoControl21 HO Related ParametersBTS Allow level handover in downlHoControl22 HO Related ParametersBTS Allow DL rapid handover HoControl23 HO Related ParametersBTS Level offset during penalty PenaltyLevOffset HO Related ParametersBTS Penalty time for handover failHoFailPenaltyTime HO Related ParametersBTS Difference of dynamic priorityDynPrioOffset HO Related ParametersBTS MAX resending times for physNY1 HO Related ParametersBTS CBC supported SmsCbUsed Cell Level Function ParametBTS Overload sending period OverloadPrd Cell Level Function ParametBTS BA Show BcchBaInd Cell Level Function ParametBTS LAPDM timer used for controT200_0 Cell Level Function ParametBTS Lapdm Timer for controlling faT200_1 Cell Level Function ParametBTS Lapdm Timer for controlling f T200_2 Cell Level Function ParametBTS Lapdm Timer for controlling sT200_3 Cell Level Function ParametBTS Lapdm Timer for controlling T200_4 Cell Level Function ParametBTS LAPDM timer used for controT200_5 Cell Level Function ParametBTS Power offset indication POWEROFFSETIND Cell Level Function ParametBTS Cell Support Encryption Mod CipherMode-0- CipherMCell Level Function ParametBTS NO of candidate cells for ha CandidateNum Cell Level Function ParametBTS Power offset PowOffset Cell Level Function ParametBTS Lapdm Timer for controlling sT200_6 Cell Level Function ParametBTS Subcell used SubCellUsed Cell Level Function Paramet

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 2: NPT Template ZTE 2G_Parameter_10-Oct-2012

Telkomsel 2G BSS Parameter Change History

Remark

RG20 Parameters

Managed Object Parameter name Abbreviated name Parameter group

BSC BVC flow control supported BVCFlowCtrl BSC Level PS Part ParametBSC MS flow control supported MSFlowCtrl BSC Level PS Part ParametBSC Flow control mode FlowCtrlMode BSC Level PS Part ParametBSC BVC flow control R MIN valu BVCFlowCtrlRMin BSC Level PS Part ParametBSC BVC flow control threshold CellFcThs BSC Level PS Part ParametBSC MS flow control threshold MsFcThs BSC Level PS Part ParametBSC BVC flow control period CellFcPer BSC Level PS Part ParametBSC MS flow control period MsFcPer BSC Level PS Part ParametBSC NSVC peer to peer delay Delay BSC Level PS Part ParametBSC Cn Cn BSC Level PS Part ParametBSC Nn Nn BSC Level PS Part ParametBSC Xn Xn BSC Level PS Part ParametBSC MAX allowed number of continN3101 BSC Level PS Part ParametBSC Times of packet uplink ACK N3103 BSC Level PS Part ParametBSC MAX allowed number of contiN3105 BSC Level PS Part ParametBSC Dynamic HR enable DynaHREnable BSC Level CS Part ParametBSC Threshold for TRX switched HRThs BSC Level CS Part ParametBSC DCS1800PCS1900 SupporteFuncExt BSC Level CS Part ParametBSC Load indication allowed LoadInd BSC Level CS Part ParametBSC Send confusion message all ConfusionMsg BSC Level CS Part ParametBSC Inter-Cell handover allowed InHoEnable BSC Level CS Part ParametBSC Send assignment failure allo ExDRSendAssFail BSC Level CS Part ParametBSC Load indication valid time LoadValidTime BSC Level CS Part ParametBSC Load indication period LoadIndPrd BSC Level CS Part ParametBSC Automatic resource indicationResourceIndThs BSC Level CS Part ParametBSC Resource adjust threshold ResourceAdjustThs BSC Level PS Part ParametBSC BSC MAX reset number BSCMaxResetNum BSC Level CS Part ParametBSC Range of BARANG Range of BARANG Radio Basic PropertyBSC User label User label Basic PropertyBSC MCC MCC BSC Level CS Part ParametBSC Support MNC 3 digits MNC3Digits BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC OMP IP OMP_IP BSC Level CS Part ParametBSC OMP MAC OMP_MAC BSC Level CS Part ParametBSC OMC subnet mask Info4 BSC Level CS Part ParametBSC OMC Gateway (Info5) Info5 BSC Level CS Part ParametBSC OMC server subnet Info6 BSC Level CS Part ParametBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC Global time zone GlobalTimeZone BSC Level CS Part ParametBSC Net Type Net BSC Level CS Part ParametBSC SP Type SpType BSC Level CS Part ParametBSC Restart Flag Restart BSC Level CS Part ParametBSC Bureau No Bureau No BSC Level CS Part ParametBSC STPT18 stpT18 ms BSC Level CS Part ParametBSC SNTP SYNC cycle info10 BSC Level CS Part ParametBSC SNTP sever address Info9 BSC Level CS Part ParametBSC Test code TestCode BSC Level CS Part ParametBSC CPU thread tracing Info2 BSC Level CS Part ParametBSC Support PFC PFCSupport BSC Level PS Part ParametBSC BSC support page coordinati PagCoordination BSC Level PS Part ParametBSC R99 Ind R99Ind BSC Level PS Part Paramet

BSC RS RS BSC Level PS Part ParametBSC RR RR BSC Level PS Part ParametBSC RA RA BSC Level PS Part ParametBSC RM RM BSC Level PS Part ParametBSC RB RB BSC Level PS Part ParametBSC RG RG BSC Level PS Part ParametBSC RE RE BSC Level PS Part ParametBSC C C BSC Level PS Part ParametBSC NACC supported NACCSupport BSC Level PS Part ParametBSC BSCrsquos net operation mode NMO BSC Level PS Part ParametBSC Satellite transmission at Gb i IsStatelliteGB BSC Level PS Part ParametBSC Extended RLC send window aIsWindowExpend BSC Level PS Part ParametBSC Support TBF establish TBF_EST BSC Level PS Part ParametBSC Support signal extended upli SIGNAL_EUTBF BSC Level PS Part ParametBSC Resource pool for PS rate PsAbisThs BSC Level PS Part ParametBSC CS channel reserved time T4 BSC Level CS Part ParametBSC Downlink TBF retry DLTBFRetry BSC Level PS Part ParametBSC BVC blockunblock retry timeBssgpT1 BSC Level PS Part ParametBSC BVC reset retry time BssgpT2 BSC Level PS Part ParametBSC Suspend retry time BssgpT3 BSC Level PS Part ParametBSC Resume retry time BssgpT4 BSC Level PS Part ParametBSC Access capability update retr BssgpT5 BSC Level PS Part ParametBSC PFC creating retry time BssgpT6 BSC Level PS Part ParametBSC PFC modifying retry time BssgpT8 BSC Level PS Part ParametBSC Protection time for FUC chanccmT1 BSC Level PS Part ParametBSC Protection time for T-networkccmT2 BSC Level PS Part ParametBSC Protection time for LSP mov ccmT3 BSC Level PS Part ParametBSC MAX times of BVC block retr BVCBlkMax BSC Level PS Part ParametBSC MAX times of BVC unblock reBVCUblkMax BSC Level PS Part ParametBSC Timer that monitors the blockNS_T1 BSC Level PS Part ParametBSC Timer that monitors reset pr NS_T2 BSC Level PS Part ParametBSC NC-Cycle of NS-VC test procNS_T3 BSC Level PS Part ParametBSC MAX times of NS alive retry NSAliveMax BSC Level PS Part ParametBSC Timer that monitors alive pp NS_T4 BSC Level PS Part ParametBSC MAX attempt period of reset NS_T5 BSC Level PS Part ParametBSC TFI and USF release timer T3169 BSC Level PS Part ParametBSC TBF release timer T3191 BSC Level PS Part ParametBSC TBF release time of downlinkT3193 BSC Level PS Part ParametBSC TBF protect time when radio liT3195 BSC Level PS Part ParametBSC PS channel delay release timPSRelDelay BSC Level PS Part ParametBSC MAX times of BVC reset retryBVCRestMax BSC Level PS Part ParametBSC MAX times of NS block retry NSBlkMax BSC Level PS Part ParametBSC MAX times of NS unblock retrNSUnblkMax BSC Level PS Part ParametBSC MAX times of suspend retry SuspendMax BSC Level PS Part ParametBSC MAX times of resume retry ResumeMax BSC Level PS Part ParametBSC MAX times of radio access capUpdateMax BSC Level PS Part ParametBSC MAX times of PFC create retrDownLoadBssPFCMax BSC Level PS Part ParametBSC MAX times of PFC modify retModifyBssPFCMax BSC Level PS Part ParametBSC Blockingunblocking period T1 BSC Level CS Part ParametBSC Protective time for No7 signaT3 BSC Level CS Part ParametBSC Global Resetting Period T4 BSC Level CS Part ParametBSC Protection period for handoveT7 BSC Level CS Part ParametBSC Source BSC handover executiT8 BSC Level CS Part ParametBSC Assignment period T10 BSC Level CS Part ParametBSC Protection period for gobal reT13 BSC Level CS Part ParametBSC Circuit resetting period on B T19 BSC Level CS Part ParametBSC Circuit group blockingunblocT20 BSC Level CS Part Paramet

BSC RLSD message receive proteT9101 BSC Level CS Part ParametBSC Channel activation protectionrmsT9103 BSC Level CS Part ParametBSC Monitor clear command T9104 BSC Level CS Part ParametBSC SCCP connection protection tT9105 BSC Level CS Part ParametBSC External handover protection TT9113 BSC Level CS Part ParametBSC MSC clear command protectiormsT1 BSC Level CS Part ParametBSC Protective time for applying t rmsT2 BSC Level CS Part ParametBSC Protective time for link esta rmsT3 BSC Level CS Part ParametBSC Protective time for P0 conf rmsT4 BSC Level CS Part ParametBSC Encryption mode modificationrmsT5 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT1 BSC Level CS Part ParametBSC External handover protective rmsT8 BSC Level CS Part ParametBSC Protective time for RF channermsT9 BSC Level CS Part ParametBSC Queue period of assignment rmsT11 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT12 BSC Level CS Part ParametBSC Mode modification process ti rmsT13 BSC Level CS Part ParametBSC Protective time of UM assign rmsT14 BSC Level CS Part ParametBSC Time of destination instance rmsT15 BSC Level CS Part ParametBSC Waiting time for oriented retr rmsT16 BSC Level CS Part ParametBSC Queue period for handover rmsTqho BSC Level CS Part ParametBSC First Overload Period of Flow MT11 BSC Level CS Part ParametBSC Second Overload Period of FlMT12 BSC Level CS Part ParametBSC Time of Micro-Micro handoverTmicro BSC Level CS Part ParametBSC BSIC decoding period Tbsic BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Immediate assignment periodrmsT3101 BSC Level CS Part ParametBSC Handover period of source celrmsT3103 BSC Level CS Part ParametBSC Assignment period rmsT3107 BSC Level CS Part ParametBSC Channel release period rmsT3109 BSC Level CS Part ParametBSC Channel deactivation delay rmsT3111 BSC Level CS Part ParametBSC Continue Timer for mode modTModeModifyConn BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Reserved rate of EMLPP EmlppThs BSC Level CS Part ParametBSC Reserved Channel First Reserved Channel FirsteMLPPBSC User label User label Not RF relatedBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC User label User label GERAN External CellBSC External cell ID External cell ID GERAN External CellBSC Cell type CellType Cell Level Property ParametBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC Frequency band FreqBand Cell Level Property ParametBSC BCCH frequency BCCH frequency GERAN External CellBSC LAC LAC Operation Control ParameterBSC CI CI Operation Control ParameterBSC NCC NCC Cell Level Property ParametBSC BCC BCC Cell Level Property ParametBSC GPRS service supported PsSupport Cell Level PS Part ParameteBSC HSC exist HCS_EXIST GERAN External CellBSC Threshold of HSC signal leveHCS_THR GERAN External CellBSC HCS priority PrioClass GERAN External CellBSC Allow SOLSA MS to access EXC_ACC Cell Level PS Part ParameteBSC Cell reselection status CellBrAc2 External Cell ParametersBSC LSA ID LSA_ID Cell Level PS Part ParameteBSC RAC RAC Cell Level Property ParametBSC User label User label UTRAN External Cell

BSC External UTRAN ID EcUTRANId External Cell ParametersBSC UTRAN cell type CellTypeUTRAN External Cell ParametersBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC UTRAN cell Frequency ArfcnUTRAN External Cell ParametersBSC LAC LAC Operation Control ParameterBSC RNC ID RNC_Id External Cell ParametersBSC C ID C_Id External Cell ParametersBSC Scrambling code or Cell Par ScCodeCellPara External Cell ParametersBSC TX diversity indication DiverSity External Cell ParametersBSC AMR Half Active Codec Set AmrHalfAcs BSC Level CS Part ParametBSC Thresholds of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrICM BSC Level CS Part ParametBSC Start mode AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBSC AMR full Active Codec Set AmrFullAcs BSC Level CS Part ParametBSC Threshold of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrlCM BSC Level CS Part ParametBSC Startmode codec AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBTS CCCH Load Indication PeriodCcchLoadIndPrd Cell Level Function ParametBTS CCCH load indication (RACHCcchLoadINDThs_0 Cell Level Function ParametBTS CCCH load indication (PA CcchLoadINDThs_1 Cell Level Function ParametBTS Average bursts count surve AvgSlots Cell Level Function ParametBTS RACH Receiving signal level tRachBuysThs Cell Level Function ParametBTS Cell Type CellType Cell Level Property ParametBTS LAC LAC Operation Control ParameterBTS CI CI Operation Control ParameterBTS NCC NCC Cell Level Property ParametBTS BCC BCC Cell Level Property ParametBTS Frequency Band FreqBand Cell Level Property ParametBTS ARFCN list CaArfcnList Cell Level Property ParametBTS Common control channel confCcchConf Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS NSEI NSEI Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS Blocks for PAGCH in FramesBsAgBlkRes Cell Level Property ParametBTS TA Max TaMax Cell Level Function ParametBTS Access Control Level AccCtrlClass Cell Level Function ParametBTS Cell bar access CellBarAccess Cell SelectionBTS Cell bar qualify CellBarQualify Cell SelectionBTS MIN received signal level to RxLevAccessMin Cell Level Function ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Number of multiframes of th BsPaMframs Channel related ParametersBTS TA Allowed TaAllowed Cell Level Function ParametBTS Protection period for access T3122 Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS Control channel MAX power lMsTxPwrMaxCch Cell Level Function ParametBTS Number of slots to spread tr TxInteger Cell Level Function Paramet

BTS Downlink discontinuous transDtxDwlink Cell Level Function ParametBTS Uplink discontinuous transmi DtxUplinkBcch Cell Level Function ParametBSC Dynamic HR Enable DynaHREnable BSC Level CS Part ParametBTS New setup cause indication NECI Cell Level Function ParametBTS Use cell dynamic HR parametUseCellDynHRPara Cell Level Function ParametBTS Multiband report indication MulbandReport HO Related ParametersBTS Interval of SDCCH re-sendin T3105d HO Related ParametersBTS Number of zero allowed in A ZeroAllowed HO Related ParametersBTS Interval of TCH re-sending T3105f HO Related ParametersBTS Neighboring cell Sample counNCell HO Related ParametersBTS Preprocessing indication Preprocess HO Related ParametersBTS MIN interval between inter-ceHoMinInterval HO Related ParametersBTS Prior layer selecting parameteLayerPriority HO Related ParametersBTS Synchronization HoPatternInd1 HO Related ParametersBTS Asynchronization HoPatternInd2 HO Related ParametersBTS Pseudo-synchronization HoPatternInd3 HO Related ParametersBTS Pre-synchronization HoPatternInd4 HO Related ParametersBTS Allow SDCCH handover HoControl1 HO Related ParametersBTS Allow inter-cell handover atteHoControl2 HO Related ParametersBTS Allow inter-cell handover att HoControl3 HO Related ParametersBTS Allow handover due to distan HoControl4 HO Related ParametersBTS Allow standard PBGT handovHoControl5 HO Related ParametersBTS Allow automatic handover baseHoControl6 HO Related ParametersBTS Allow handover based on direHoControl7 HO Related ParametersBTS Allow handover based on homoHoControl8 HO Related ParametersBTS Allow intra-cell handover in HoControl9 HO Related ParametersBTS Allow intra-cell handover in HoControl10 HO Related ParametersBTS Allow adjacent cells handoveHoControl11 HO Related ParametersBTS Allow dynamic adjustment of HoControl12 HO Related ParametersBTS Allow rapid handover HoControl13 HO Related ParametersBTS Allow Macro-Micro delay hanHoControl14 HO Related ParametersBTS Allow Micro-Macro delay hanHoControl15 HO Related ParametersBTS Allow internal handover baseHoControl16 HO Related ParametersBTS Allow quality handover in upliHoControl19 HO Related ParametersBTS Allow level handover in uplinkHoControl20 HO Related ParametersBTS Allow quality handover in dowHoControl21 HO Related ParametersBTS Allow level handover in downlHoControl22 HO Related ParametersBTS Allow DL rapid handover HoControl23 HO Related ParametersBTS Level offset during penalty PenaltyLevOffset HO Related ParametersBTS Penalty time for handover failHoFailPenaltyTime HO Related ParametersBTS Difference of dynamic priorityDynPrioOffset HO Related ParametersBTS MAX resending times for physNY1 HO Related ParametersBTS CBC supported SmsCbUsed Cell Level Function ParametBTS Overload sending period OverloadPrd Cell Level Function ParametBTS BA Show BcchBaInd Cell Level Function ParametBTS LAPDM timer used for controT200_0 Cell Level Function ParametBTS Lapdm Timer for controlling faT200_1 Cell Level Function ParametBTS Lapdm Timer for controlling f T200_2 Cell Level Function ParametBTS Lapdm Timer for controlling sT200_3 Cell Level Function ParametBTS Lapdm Timer for controlling T200_4 Cell Level Function ParametBTS LAPDM timer used for controT200_5 Cell Level Function ParametBTS Power offset indication POWEROFFSETIND Cell Level Function ParametBTS Cell Support Encryption Mod CipherMode-0- CipherMCell Level Function ParametBTS NO of candidate cells for ha CandidateNum Cell Level Function ParametBTS Power offset PowOffset Cell Level Function ParametBTS Lapdm Timer for controlling sT200_6 Cell Level Function ParametBTS Subcell used SubCellUsed Cell Level Function Paramet

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 3: NPT Template ZTE 2G_Parameter_10-Oct-2012

RG20 Parameters

Managed Object Parameter name Abbreviated name Parameter group

BSC BVC flow control supported BVCFlowCtrl BSC Level PS Part ParametBSC MS flow control supported MSFlowCtrl BSC Level PS Part ParametBSC Flow control mode FlowCtrlMode BSC Level PS Part ParametBSC BVC flow control R MIN valu BVCFlowCtrlRMin BSC Level PS Part ParametBSC BVC flow control threshold CellFcThs BSC Level PS Part ParametBSC MS flow control threshold MsFcThs BSC Level PS Part ParametBSC BVC flow control period CellFcPer BSC Level PS Part ParametBSC MS flow control period MsFcPer BSC Level PS Part ParametBSC NSVC peer to peer delay Delay BSC Level PS Part ParametBSC Cn Cn BSC Level PS Part ParametBSC Nn Nn BSC Level PS Part ParametBSC Xn Xn BSC Level PS Part ParametBSC MAX allowed number of continN3101 BSC Level PS Part ParametBSC Times of packet uplink ACK N3103 BSC Level PS Part ParametBSC MAX allowed number of contiN3105 BSC Level PS Part ParametBSC Dynamic HR enable DynaHREnable BSC Level CS Part ParametBSC Threshold for TRX switched HRThs BSC Level CS Part ParametBSC DCS1800PCS1900 SupporteFuncExt BSC Level CS Part ParametBSC Load indication allowed LoadInd BSC Level CS Part ParametBSC Send confusion message all ConfusionMsg BSC Level CS Part ParametBSC Inter-Cell handover allowed InHoEnable BSC Level CS Part ParametBSC Send assignment failure allo ExDRSendAssFail BSC Level CS Part ParametBSC Load indication valid time LoadValidTime BSC Level CS Part ParametBSC Load indication period LoadIndPrd BSC Level CS Part ParametBSC Automatic resource indicationResourceIndThs BSC Level CS Part ParametBSC Resource adjust threshold ResourceAdjustThs BSC Level PS Part ParametBSC BSC MAX reset number BSCMaxResetNum BSC Level CS Part ParametBSC Range of BARANG Range of BARANG Radio Basic PropertyBSC User label User label Basic PropertyBSC MCC MCC BSC Level CS Part ParametBSC Support MNC 3 digits MNC3Digits BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC OMP IP OMP_IP BSC Level CS Part ParametBSC OMP MAC OMP_MAC BSC Level CS Part ParametBSC OMC subnet mask Info4 BSC Level CS Part ParametBSC OMC Gateway (Info5) Info5 BSC Level CS Part ParametBSC OMC server subnet Info6 BSC Level CS Part ParametBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC Global time zone GlobalTimeZone BSC Level CS Part ParametBSC Net Type Net BSC Level CS Part ParametBSC SP Type SpType BSC Level CS Part ParametBSC Restart Flag Restart BSC Level CS Part ParametBSC Bureau No Bureau No BSC Level CS Part ParametBSC STPT18 stpT18 ms BSC Level CS Part ParametBSC SNTP SYNC cycle info10 BSC Level CS Part ParametBSC SNTP sever address Info9 BSC Level CS Part ParametBSC Test code TestCode BSC Level CS Part ParametBSC CPU thread tracing Info2 BSC Level CS Part ParametBSC Support PFC PFCSupport BSC Level PS Part ParametBSC BSC support page coordinati PagCoordination BSC Level PS Part ParametBSC R99 Ind R99Ind BSC Level PS Part Paramet

BSC RS RS BSC Level PS Part ParametBSC RR RR BSC Level PS Part ParametBSC RA RA BSC Level PS Part ParametBSC RM RM BSC Level PS Part ParametBSC RB RB BSC Level PS Part ParametBSC RG RG BSC Level PS Part ParametBSC RE RE BSC Level PS Part ParametBSC C C BSC Level PS Part ParametBSC NACC supported NACCSupport BSC Level PS Part ParametBSC BSCrsquos net operation mode NMO BSC Level PS Part ParametBSC Satellite transmission at Gb i IsStatelliteGB BSC Level PS Part ParametBSC Extended RLC send window aIsWindowExpend BSC Level PS Part ParametBSC Support TBF establish TBF_EST BSC Level PS Part ParametBSC Support signal extended upli SIGNAL_EUTBF BSC Level PS Part ParametBSC Resource pool for PS rate PsAbisThs BSC Level PS Part ParametBSC CS channel reserved time T4 BSC Level CS Part ParametBSC Downlink TBF retry DLTBFRetry BSC Level PS Part ParametBSC BVC blockunblock retry timeBssgpT1 BSC Level PS Part ParametBSC BVC reset retry time BssgpT2 BSC Level PS Part ParametBSC Suspend retry time BssgpT3 BSC Level PS Part ParametBSC Resume retry time BssgpT4 BSC Level PS Part ParametBSC Access capability update retr BssgpT5 BSC Level PS Part ParametBSC PFC creating retry time BssgpT6 BSC Level PS Part ParametBSC PFC modifying retry time BssgpT8 BSC Level PS Part ParametBSC Protection time for FUC chanccmT1 BSC Level PS Part ParametBSC Protection time for T-networkccmT2 BSC Level PS Part ParametBSC Protection time for LSP mov ccmT3 BSC Level PS Part ParametBSC MAX times of BVC block retr BVCBlkMax BSC Level PS Part ParametBSC MAX times of BVC unblock reBVCUblkMax BSC Level PS Part ParametBSC Timer that monitors the blockNS_T1 BSC Level PS Part ParametBSC Timer that monitors reset pr NS_T2 BSC Level PS Part ParametBSC NC-Cycle of NS-VC test procNS_T3 BSC Level PS Part ParametBSC MAX times of NS alive retry NSAliveMax BSC Level PS Part ParametBSC Timer that monitors alive pp NS_T4 BSC Level PS Part ParametBSC MAX attempt period of reset NS_T5 BSC Level PS Part ParametBSC TFI and USF release timer T3169 BSC Level PS Part ParametBSC TBF release timer T3191 BSC Level PS Part ParametBSC TBF release time of downlinkT3193 BSC Level PS Part ParametBSC TBF protect time when radio liT3195 BSC Level PS Part ParametBSC PS channel delay release timPSRelDelay BSC Level PS Part ParametBSC MAX times of BVC reset retryBVCRestMax BSC Level PS Part ParametBSC MAX times of NS block retry NSBlkMax BSC Level PS Part ParametBSC MAX times of NS unblock retrNSUnblkMax BSC Level PS Part ParametBSC MAX times of suspend retry SuspendMax BSC Level PS Part ParametBSC MAX times of resume retry ResumeMax BSC Level PS Part ParametBSC MAX times of radio access capUpdateMax BSC Level PS Part ParametBSC MAX times of PFC create retrDownLoadBssPFCMax BSC Level PS Part ParametBSC MAX times of PFC modify retModifyBssPFCMax BSC Level PS Part ParametBSC Blockingunblocking period T1 BSC Level CS Part ParametBSC Protective time for No7 signaT3 BSC Level CS Part ParametBSC Global Resetting Period T4 BSC Level CS Part ParametBSC Protection period for handoveT7 BSC Level CS Part ParametBSC Source BSC handover executiT8 BSC Level CS Part ParametBSC Assignment period T10 BSC Level CS Part ParametBSC Protection period for gobal reT13 BSC Level CS Part ParametBSC Circuit resetting period on B T19 BSC Level CS Part ParametBSC Circuit group blockingunblocT20 BSC Level CS Part Paramet

BSC RLSD message receive proteT9101 BSC Level CS Part ParametBSC Channel activation protectionrmsT9103 BSC Level CS Part ParametBSC Monitor clear command T9104 BSC Level CS Part ParametBSC SCCP connection protection tT9105 BSC Level CS Part ParametBSC External handover protection TT9113 BSC Level CS Part ParametBSC MSC clear command protectiormsT1 BSC Level CS Part ParametBSC Protective time for applying t rmsT2 BSC Level CS Part ParametBSC Protective time for link esta rmsT3 BSC Level CS Part ParametBSC Protective time for P0 conf rmsT4 BSC Level CS Part ParametBSC Encryption mode modificationrmsT5 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT1 BSC Level CS Part ParametBSC External handover protective rmsT8 BSC Level CS Part ParametBSC Protective time for RF channermsT9 BSC Level CS Part ParametBSC Queue period of assignment rmsT11 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT12 BSC Level CS Part ParametBSC Mode modification process ti rmsT13 BSC Level CS Part ParametBSC Protective time of UM assign rmsT14 BSC Level CS Part ParametBSC Time of destination instance rmsT15 BSC Level CS Part ParametBSC Waiting time for oriented retr rmsT16 BSC Level CS Part ParametBSC Queue period for handover rmsTqho BSC Level CS Part ParametBSC First Overload Period of Flow MT11 BSC Level CS Part ParametBSC Second Overload Period of FlMT12 BSC Level CS Part ParametBSC Time of Micro-Micro handoverTmicro BSC Level CS Part ParametBSC BSIC decoding period Tbsic BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Immediate assignment periodrmsT3101 BSC Level CS Part ParametBSC Handover period of source celrmsT3103 BSC Level CS Part ParametBSC Assignment period rmsT3107 BSC Level CS Part ParametBSC Channel release period rmsT3109 BSC Level CS Part ParametBSC Channel deactivation delay rmsT3111 BSC Level CS Part ParametBSC Continue Timer for mode modTModeModifyConn BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Reserved rate of EMLPP EmlppThs BSC Level CS Part ParametBSC Reserved Channel First Reserved Channel FirsteMLPPBSC User label User label Not RF relatedBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC User label User label GERAN External CellBSC External cell ID External cell ID GERAN External CellBSC Cell type CellType Cell Level Property ParametBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC Frequency band FreqBand Cell Level Property ParametBSC BCCH frequency BCCH frequency GERAN External CellBSC LAC LAC Operation Control ParameterBSC CI CI Operation Control ParameterBSC NCC NCC Cell Level Property ParametBSC BCC BCC Cell Level Property ParametBSC GPRS service supported PsSupport Cell Level PS Part ParameteBSC HSC exist HCS_EXIST GERAN External CellBSC Threshold of HSC signal leveHCS_THR GERAN External CellBSC HCS priority PrioClass GERAN External CellBSC Allow SOLSA MS to access EXC_ACC Cell Level PS Part ParameteBSC Cell reselection status CellBrAc2 External Cell ParametersBSC LSA ID LSA_ID Cell Level PS Part ParameteBSC RAC RAC Cell Level Property ParametBSC User label User label UTRAN External Cell

BSC External UTRAN ID EcUTRANId External Cell ParametersBSC UTRAN cell type CellTypeUTRAN External Cell ParametersBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC UTRAN cell Frequency ArfcnUTRAN External Cell ParametersBSC LAC LAC Operation Control ParameterBSC RNC ID RNC_Id External Cell ParametersBSC C ID C_Id External Cell ParametersBSC Scrambling code or Cell Par ScCodeCellPara External Cell ParametersBSC TX diversity indication DiverSity External Cell ParametersBSC AMR Half Active Codec Set AmrHalfAcs BSC Level CS Part ParametBSC Thresholds of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrICM BSC Level CS Part ParametBSC Start mode AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBSC AMR full Active Codec Set AmrFullAcs BSC Level CS Part ParametBSC Threshold of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrlCM BSC Level CS Part ParametBSC Startmode codec AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBTS CCCH Load Indication PeriodCcchLoadIndPrd Cell Level Function ParametBTS CCCH load indication (RACHCcchLoadINDThs_0 Cell Level Function ParametBTS CCCH load indication (PA CcchLoadINDThs_1 Cell Level Function ParametBTS Average bursts count surve AvgSlots Cell Level Function ParametBTS RACH Receiving signal level tRachBuysThs Cell Level Function ParametBTS Cell Type CellType Cell Level Property ParametBTS LAC LAC Operation Control ParameterBTS CI CI Operation Control ParameterBTS NCC NCC Cell Level Property ParametBTS BCC BCC Cell Level Property ParametBTS Frequency Band FreqBand Cell Level Property ParametBTS ARFCN list CaArfcnList Cell Level Property ParametBTS Common control channel confCcchConf Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS NSEI NSEI Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS Blocks for PAGCH in FramesBsAgBlkRes Cell Level Property ParametBTS TA Max TaMax Cell Level Function ParametBTS Access Control Level AccCtrlClass Cell Level Function ParametBTS Cell bar access CellBarAccess Cell SelectionBTS Cell bar qualify CellBarQualify Cell SelectionBTS MIN received signal level to RxLevAccessMin Cell Level Function ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Number of multiframes of th BsPaMframs Channel related ParametersBTS TA Allowed TaAllowed Cell Level Function ParametBTS Protection period for access T3122 Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS Control channel MAX power lMsTxPwrMaxCch Cell Level Function ParametBTS Number of slots to spread tr TxInteger Cell Level Function Paramet

BTS Downlink discontinuous transDtxDwlink Cell Level Function ParametBTS Uplink discontinuous transmi DtxUplinkBcch Cell Level Function ParametBSC Dynamic HR Enable DynaHREnable BSC Level CS Part ParametBTS New setup cause indication NECI Cell Level Function ParametBTS Use cell dynamic HR parametUseCellDynHRPara Cell Level Function ParametBTS Multiband report indication MulbandReport HO Related ParametersBTS Interval of SDCCH re-sendin T3105d HO Related ParametersBTS Number of zero allowed in A ZeroAllowed HO Related ParametersBTS Interval of TCH re-sending T3105f HO Related ParametersBTS Neighboring cell Sample counNCell HO Related ParametersBTS Preprocessing indication Preprocess HO Related ParametersBTS MIN interval between inter-ceHoMinInterval HO Related ParametersBTS Prior layer selecting parameteLayerPriority HO Related ParametersBTS Synchronization HoPatternInd1 HO Related ParametersBTS Asynchronization HoPatternInd2 HO Related ParametersBTS Pseudo-synchronization HoPatternInd3 HO Related ParametersBTS Pre-synchronization HoPatternInd4 HO Related ParametersBTS Allow SDCCH handover HoControl1 HO Related ParametersBTS Allow inter-cell handover atteHoControl2 HO Related ParametersBTS Allow inter-cell handover att HoControl3 HO Related ParametersBTS Allow handover due to distan HoControl4 HO Related ParametersBTS Allow standard PBGT handovHoControl5 HO Related ParametersBTS Allow automatic handover baseHoControl6 HO Related ParametersBTS Allow handover based on direHoControl7 HO Related ParametersBTS Allow handover based on homoHoControl8 HO Related ParametersBTS Allow intra-cell handover in HoControl9 HO Related ParametersBTS Allow intra-cell handover in HoControl10 HO Related ParametersBTS Allow adjacent cells handoveHoControl11 HO Related ParametersBTS Allow dynamic adjustment of HoControl12 HO Related ParametersBTS Allow rapid handover HoControl13 HO Related ParametersBTS Allow Macro-Micro delay hanHoControl14 HO Related ParametersBTS Allow Micro-Macro delay hanHoControl15 HO Related ParametersBTS Allow internal handover baseHoControl16 HO Related ParametersBTS Allow quality handover in upliHoControl19 HO Related ParametersBTS Allow level handover in uplinkHoControl20 HO Related ParametersBTS Allow quality handover in dowHoControl21 HO Related ParametersBTS Allow level handover in downlHoControl22 HO Related ParametersBTS Allow DL rapid handover HoControl23 HO Related ParametersBTS Level offset during penalty PenaltyLevOffset HO Related ParametersBTS Penalty time for handover failHoFailPenaltyTime HO Related ParametersBTS Difference of dynamic priorityDynPrioOffset HO Related ParametersBTS MAX resending times for physNY1 HO Related ParametersBTS CBC supported SmsCbUsed Cell Level Function ParametBTS Overload sending period OverloadPrd Cell Level Function ParametBTS BA Show BcchBaInd Cell Level Function ParametBTS LAPDM timer used for controT200_0 Cell Level Function ParametBTS Lapdm Timer for controlling faT200_1 Cell Level Function ParametBTS Lapdm Timer for controlling f T200_2 Cell Level Function ParametBTS Lapdm Timer for controlling sT200_3 Cell Level Function ParametBTS Lapdm Timer for controlling T200_4 Cell Level Function ParametBTS LAPDM timer used for controT200_5 Cell Level Function ParametBTS Power offset indication POWEROFFSETIND Cell Level Function ParametBTS Cell Support Encryption Mod CipherMode-0- CipherMCell Level Function ParametBTS NO of candidate cells for ha CandidateNum Cell Level Function ParametBTS Power offset PowOffset Cell Level Function ParametBTS Lapdm Timer for controlling sT200_6 Cell Level Function ParametBTS Subcell used SubCellUsed Cell Level Function Paramet

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 4: NPT Template ZTE 2G_Parameter_10-Oct-2012

BSC RS RS BSC Level PS Part ParametBSC RR RR BSC Level PS Part ParametBSC RA RA BSC Level PS Part ParametBSC RM RM BSC Level PS Part ParametBSC RB RB BSC Level PS Part ParametBSC RG RG BSC Level PS Part ParametBSC RE RE BSC Level PS Part ParametBSC C C BSC Level PS Part ParametBSC NACC supported NACCSupport BSC Level PS Part ParametBSC BSCrsquos net operation mode NMO BSC Level PS Part ParametBSC Satellite transmission at Gb i IsStatelliteGB BSC Level PS Part ParametBSC Extended RLC send window aIsWindowExpend BSC Level PS Part ParametBSC Support TBF establish TBF_EST BSC Level PS Part ParametBSC Support signal extended upli SIGNAL_EUTBF BSC Level PS Part ParametBSC Resource pool for PS rate PsAbisThs BSC Level PS Part ParametBSC CS channel reserved time T4 BSC Level CS Part ParametBSC Downlink TBF retry DLTBFRetry BSC Level PS Part ParametBSC BVC blockunblock retry timeBssgpT1 BSC Level PS Part ParametBSC BVC reset retry time BssgpT2 BSC Level PS Part ParametBSC Suspend retry time BssgpT3 BSC Level PS Part ParametBSC Resume retry time BssgpT4 BSC Level PS Part ParametBSC Access capability update retr BssgpT5 BSC Level PS Part ParametBSC PFC creating retry time BssgpT6 BSC Level PS Part ParametBSC PFC modifying retry time BssgpT8 BSC Level PS Part ParametBSC Protection time for FUC chanccmT1 BSC Level PS Part ParametBSC Protection time for T-networkccmT2 BSC Level PS Part ParametBSC Protection time for LSP mov ccmT3 BSC Level PS Part ParametBSC MAX times of BVC block retr BVCBlkMax BSC Level PS Part ParametBSC MAX times of BVC unblock reBVCUblkMax BSC Level PS Part ParametBSC Timer that monitors the blockNS_T1 BSC Level PS Part ParametBSC Timer that monitors reset pr NS_T2 BSC Level PS Part ParametBSC NC-Cycle of NS-VC test procNS_T3 BSC Level PS Part ParametBSC MAX times of NS alive retry NSAliveMax BSC Level PS Part ParametBSC Timer that monitors alive pp NS_T4 BSC Level PS Part ParametBSC MAX attempt period of reset NS_T5 BSC Level PS Part ParametBSC TFI and USF release timer T3169 BSC Level PS Part ParametBSC TBF release timer T3191 BSC Level PS Part ParametBSC TBF release time of downlinkT3193 BSC Level PS Part ParametBSC TBF protect time when radio liT3195 BSC Level PS Part ParametBSC PS channel delay release timPSRelDelay BSC Level PS Part ParametBSC MAX times of BVC reset retryBVCRestMax BSC Level PS Part ParametBSC MAX times of NS block retry NSBlkMax BSC Level PS Part ParametBSC MAX times of NS unblock retrNSUnblkMax BSC Level PS Part ParametBSC MAX times of suspend retry SuspendMax BSC Level PS Part ParametBSC MAX times of resume retry ResumeMax BSC Level PS Part ParametBSC MAX times of radio access capUpdateMax BSC Level PS Part ParametBSC MAX times of PFC create retrDownLoadBssPFCMax BSC Level PS Part ParametBSC MAX times of PFC modify retModifyBssPFCMax BSC Level PS Part ParametBSC Blockingunblocking period T1 BSC Level CS Part ParametBSC Protective time for No7 signaT3 BSC Level CS Part ParametBSC Global Resetting Period T4 BSC Level CS Part ParametBSC Protection period for handoveT7 BSC Level CS Part ParametBSC Source BSC handover executiT8 BSC Level CS Part ParametBSC Assignment period T10 BSC Level CS Part ParametBSC Protection period for gobal reT13 BSC Level CS Part ParametBSC Circuit resetting period on B T19 BSC Level CS Part ParametBSC Circuit group blockingunblocT20 BSC Level CS Part Paramet

BSC RLSD message receive proteT9101 BSC Level CS Part ParametBSC Channel activation protectionrmsT9103 BSC Level CS Part ParametBSC Monitor clear command T9104 BSC Level CS Part ParametBSC SCCP connection protection tT9105 BSC Level CS Part ParametBSC External handover protection TT9113 BSC Level CS Part ParametBSC MSC clear command protectiormsT1 BSC Level CS Part ParametBSC Protective time for applying t rmsT2 BSC Level CS Part ParametBSC Protective time for link esta rmsT3 BSC Level CS Part ParametBSC Protective time for P0 conf rmsT4 BSC Level CS Part ParametBSC Encryption mode modificationrmsT5 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT1 BSC Level CS Part ParametBSC External handover protective rmsT8 BSC Level CS Part ParametBSC Protective time for RF channermsT9 BSC Level CS Part ParametBSC Queue period of assignment rmsT11 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT12 BSC Level CS Part ParametBSC Mode modification process ti rmsT13 BSC Level CS Part ParametBSC Protective time of UM assign rmsT14 BSC Level CS Part ParametBSC Time of destination instance rmsT15 BSC Level CS Part ParametBSC Waiting time for oriented retr rmsT16 BSC Level CS Part ParametBSC Queue period for handover rmsTqho BSC Level CS Part ParametBSC First Overload Period of Flow MT11 BSC Level CS Part ParametBSC Second Overload Period of FlMT12 BSC Level CS Part ParametBSC Time of Micro-Micro handoverTmicro BSC Level CS Part ParametBSC BSIC decoding period Tbsic BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Immediate assignment periodrmsT3101 BSC Level CS Part ParametBSC Handover period of source celrmsT3103 BSC Level CS Part ParametBSC Assignment period rmsT3107 BSC Level CS Part ParametBSC Channel release period rmsT3109 BSC Level CS Part ParametBSC Channel deactivation delay rmsT3111 BSC Level CS Part ParametBSC Continue Timer for mode modTModeModifyConn BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Reserved rate of EMLPP EmlppThs BSC Level CS Part ParametBSC Reserved Channel First Reserved Channel FirsteMLPPBSC User label User label Not RF relatedBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC User label User label GERAN External CellBSC External cell ID External cell ID GERAN External CellBSC Cell type CellType Cell Level Property ParametBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC Frequency band FreqBand Cell Level Property ParametBSC BCCH frequency BCCH frequency GERAN External CellBSC LAC LAC Operation Control ParameterBSC CI CI Operation Control ParameterBSC NCC NCC Cell Level Property ParametBSC BCC BCC Cell Level Property ParametBSC GPRS service supported PsSupport Cell Level PS Part ParameteBSC HSC exist HCS_EXIST GERAN External CellBSC Threshold of HSC signal leveHCS_THR GERAN External CellBSC HCS priority PrioClass GERAN External CellBSC Allow SOLSA MS to access EXC_ACC Cell Level PS Part ParameteBSC Cell reselection status CellBrAc2 External Cell ParametersBSC LSA ID LSA_ID Cell Level PS Part ParameteBSC RAC RAC Cell Level Property ParametBSC User label User label UTRAN External Cell

BSC External UTRAN ID EcUTRANId External Cell ParametersBSC UTRAN cell type CellTypeUTRAN External Cell ParametersBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC UTRAN cell Frequency ArfcnUTRAN External Cell ParametersBSC LAC LAC Operation Control ParameterBSC RNC ID RNC_Id External Cell ParametersBSC C ID C_Id External Cell ParametersBSC Scrambling code or Cell Par ScCodeCellPara External Cell ParametersBSC TX diversity indication DiverSity External Cell ParametersBSC AMR Half Active Codec Set AmrHalfAcs BSC Level CS Part ParametBSC Thresholds of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrICM BSC Level CS Part ParametBSC Start mode AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBSC AMR full Active Codec Set AmrFullAcs BSC Level CS Part ParametBSC Threshold of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrlCM BSC Level CS Part ParametBSC Startmode codec AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBTS CCCH Load Indication PeriodCcchLoadIndPrd Cell Level Function ParametBTS CCCH load indication (RACHCcchLoadINDThs_0 Cell Level Function ParametBTS CCCH load indication (PA CcchLoadINDThs_1 Cell Level Function ParametBTS Average bursts count surve AvgSlots Cell Level Function ParametBTS RACH Receiving signal level tRachBuysThs Cell Level Function ParametBTS Cell Type CellType Cell Level Property ParametBTS LAC LAC Operation Control ParameterBTS CI CI Operation Control ParameterBTS NCC NCC Cell Level Property ParametBTS BCC BCC Cell Level Property ParametBTS Frequency Band FreqBand Cell Level Property ParametBTS ARFCN list CaArfcnList Cell Level Property ParametBTS Common control channel confCcchConf Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS NSEI NSEI Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS Blocks for PAGCH in FramesBsAgBlkRes Cell Level Property ParametBTS TA Max TaMax Cell Level Function ParametBTS Access Control Level AccCtrlClass Cell Level Function ParametBTS Cell bar access CellBarAccess Cell SelectionBTS Cell bar qualify CellBarQualify Cell SelectionBTS MIN received signal level to RxLevAccessMin Cell Level Function ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Number of multiframes of th BsPaMframs Channel related ParametersBTS TA Allowed TaAllowed Cell Level Function ParametBTS Protection period for access T3122 Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS Control channel MAX power lMsTxPwrMaxCch Cell Level Function ParametBTS Number of slots to spread tr TxInteger Cell Level Function Paramet

BTS Downlink discontinuous transDtxDwlink Cell Level Function ParametBTS Uplink discontinuous transmi DtxUplinkBcch Cell Level Function ParametBSC Dynamic HR Enable DynaHREnable BSC Level CS Part ParametBTS New setup cause indication NECI Cell Level Function ParametBTS Use cell dynamic HR parametUseCellDynHRPara Cell Level Function ParametBTS Multiband report indication MulbandReport HO Related ParametersBTS Interval of SDCCH re-sendin T3105d HO Related ParametersBTS Number of zero allowed in A ZeroAllowed HO Related ParametersBTS Interval of TCH re-sending T3105f HO Related ParametersBTS Neighboring cell Sample counNCell HO Related ParametersBTS Preprocessing indication Preprocess HO Related ParametersBTS MIN interval between inter-ceHoMinInterval HO Related ParametersBTS Prior layer selecting parameteLayerPriority HO Related ParametersBTS Synchronization HoPatternInd1 HO Related ParametersBTS Asynchronization HoPatternInd2 HO Related ParametersBTS Pseudo-synchronization HoPatternInd3 HO Related ParametersBTS Pre-synchronization HoPatternInd4 HO Related ParametersBTS Allow SDCCH handover HoControl1 HO Related ParametersBTS Allow inter-cell handover atteHoControl2 HO Related ParametersBTS Allow inter-cell handover att HoControl3 HO Related ParametersBTS Allow handover due to distan HoControl4 HO Related ParametersBTS Allow standard PBGT handovHoControl5 HO Related ParametersBTS Allow automatic handover baseHoControl6 HO Related ParametersBTS Allow handover based on direHoControl7 HO Related ParametersBTS Allow handover based on homoHoControl8 HO Related ParametersBTS Allow intra-cell handover in HoControl9 HO Related ParametersBTS Allow intra-cell handover in HoControl10 HO Related ParametersBTS Allow adjacent cells handoveHoControl11 HO Related ParametersBTS Allow dynamic adjustment of HoControl12 HO Related ParametersBTS Allow rapid handover HoControl13 HO Related ParametersBTS Allow Macro-Micro delay hanHoControl14 HO Related ParametersBTS Allow Micro-Macro delay hanHoControl15 HO Related ParametersBTS Allow internal handover baseHoControl16 HO Related ParametersBTS Allow quality handover in upliHoControl19 HO Related ParametersBTS Allow level handover in uplinkHoControl20 HO Related ParametersBTS Allow quality handover in dowHoControl21 HO Related ParametersBTS Allow level handover in downlHoControl22 HO Related ParametersBTS Allow DL rapid handover HoControl23 HO Related ParametersBTS Level offset during penalty PenaltyLevOffset HO Related ParametersBTS Penalty time for handover failHoFailPenaltyTime HO Related ParametersBTS Difference of dynamic priorityDynPrioOffset HO Related ParametersBTS MAX resending times for physNY1 HO Related ParametersBTS CBC supported SmsCbUsed Cell Level Function ParametBTS Overload sending period OverloadPrd Cell Level Function ParametBTS BA Show BcchBaInd Cell Level Function ParametBTS LAPDM timer used for controT200_0 Cell Level Function ParametBTS Lapdm Timer for controlling faT200_1 Cell Level Function ParametBTS Lapdm Timer for controlling f T200_2 Cell Level Function ParametBTS Lapdm Timer for controlling sT200_3 Cell Level Function ParametBTS Lapdm Timer for controlling T200_4 Cell Level Function ParametBTS LAPDM timer used for controT200_5 Cell Level Function ParametBTS Power offset indication POWEROFFSETIND Cell Level Function ParametBTS Cell Support Encryption Mod CipherMode-0- CipherMCell Level Function ParametBTS NO of candidate cells for ha CandidateNum Cell Level Function ParametBTS Power offset PowOffset Cell Level Function ParametBTS Lapdm Timer for controlling sT200_6 Cell Level Function ParametBTS Subcell used SubCellUsed Cell Level Function Paramet

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 5: NPT Template ZTE 2G_Parameter_10-Oct-2012

BSC RLSD message receive proteT9101 BSC Level CS Part ParametBSC Channel activation protectionrmsT9103 BSC Level CS Part ParametBSC Monitor clear command T9104 BSC Level CS Part ParametBSC SCCP connection protection tT9105 BSC Level CS Part ParametBSC External handover protection TT9113 BSC Level CS Part ParametBSC MSC clear command protectiormsT1 BSC Level CS Part ParametBSC Protective time for applying t rmsT2 BSC Level CS Part ParametBSC Protective time for link esta rmsT3 BSC Level CS Part ParametBSC Protective time for P0 conf rmsT4 BSC Level CS Part ParametBSC Encryption mode modificationrmsT5 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT1 BSC Level CS Part ParametBSC External handover protective rmsT8 BSC Level CS Part ParametBSC Protective time for RF channermsT9 BSC Level CS Part ParametBSC Queue period of assignment rmsT11 BSC Level CS Part ParametBSC Acknowledgment interval for prmsT12 BSC Level CS Part ParametBSC Mode modification process ti rmsT13 BSC Level CS Part ParametBSC Protective time of UM assign rmsT14 BSC Level CS Part ParametBSC Time of destination instance rmsT15 BSC Level CS Part ParametBSC Waiting time for oriented retr rmsT16 BSC Level CS Part ParametBSC Queue period for handover rmsTqho BSC Level CS Part ParametBSC First Overload Period of Flow MT11 BSC Level CS Part ParametBSC Second Overload Period of FlMT12 BSC Level CS Part ParametBSC Time of Micro-Micro handoverTmicro BSC Level CS Part ParametBSC BSIC decoding period Tbsic BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Immediate assignment periodrmsT3101 BSC Level CS Part ParametBSC Handover period of source celrmsT3103 BSC Level CS Part ParametBSC Assignment period rmsT3107 BSC Level CS Part ParametBSC Channel release period rmsT3109 BSC Level CS Part ParametBSC Channel deactivation delay rmsT3111 BSC Level CS Part ParametBSC Continue Timer for mode modTModeModifyConn BSC Level CS Part ParametBSC Handover protecting time to mT7 BSC Level CS Part ParametBSC Reserved rate of EMLPP EmlppThs BSC Level CS Part ParametBSC Reserved Channel First Reserved Channel FirsteMLPPBSC User label User label Not RF relatedBSC Longitude Longitude BSC Level CS Part ParametBSC Latitude Latitude BSC Level CS Part ParametBSC User label User label GERAN External CellBSC External cell ID External cell ID GERAN External CellBSC Cell type CellType Cell Level Property ParametBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC Frequency band FreqBand Cell Level Property ParametBSC BCCH frequency BCCH frequency GERAN External CellBSC LAC LAC Operation Control ParameterBSC CI CI Operation Control ParameterBSC NCC NCC Cell Level Property ParametBSC BCC BCC Cell Level Property ParametBSC GPRS service supported PsSupport Cell Level PS Part ParameteBSC HSC exist HCS_EXIST GERAN External CellBSC Threshold of HSC signal leveHCS_THR GERAN External CellBSC HCS priority PrioClass GERAN External CellBSC Allow SOLSA MS to access EXC_ACC Cell Level PS Part ParameteBSC Cell reselection status CellBrAc2 External Cell ParametersBSC LSA ID LSA_ID Cell Level PS Part ParameteBSC RAC RAC Cell Level Property ParametBSC User label User label UTRAN External Cell

BSC External UTRAN ID EcUTRANId External Cell ParametersBSC UTRAN cell type CellTypeUTRAN External Cell ParametersBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC UTRAN cell Frequency ArfcnUTRAN External Cell ParametersBSC LAC LAC Operation Control ParameterBSC RNC ID RNC_Id External Cell ParametersBSC C ID C_Id External Cell ParametersBSC Scrambling code or Cell Par ScCodeCellPara External Cell ParametersBSC TX diversity indication DiverSity External Cell ParametersBSC AMR Half Active Codec Set AmrHalfAcs BSC Level CS Part ParametBSC Thresholds of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrICM BSC Level CS Part ParametBSC Start mode AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBSC AMR full Active Codec Set AmrFullAcs BSC Level CS Part ParametBSC Threshold of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrlCM BSC Level CS Part ParametBSC Startmode codec AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBTS CCCH Load Indication PeriodCcchLoadIndPrd Cell Level Function ParametBTS CCCH load indication (RACHCcchLoadINDThs_0 Cell Level Function ParametBTS CCCH load indication (PA CcchLoadINDThs_1 Cell Level Function ParametBTS Average bursts count surve AvgSlots Cell Level Function ParametBTS RACH Receiving signal level tRachBuysThs Cell Level Function ParametBTS Cell Type CellType Cell Level Property ParametBTS LAC LAC Operation Control ParameterBTS CI CI Operation Control ParameterBTS NCC NCC Cell Level Property ParametBTS BCC BCC Cell Level Property ParametBTS Frequency Band FreqBand Cell Level Property ParametBTS ARFCN list CaArfcnList Cell Level Property ParametBTS Common control channel confCcchConf Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS NSEI NSEI Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS Blocks for PAGCH in FramesBsAgBlkRes Cell Level Property ParametBTS TA Max TaMax Cell Level Function ParametBTS Access Control Level AccCtrlClass Cell Level Function ParametBTS Cell bar access CellBarAccess Cell SelectionBTS Cell bar qualify CellBarQualify Cell SelectionBTS MIN received signal level to RxLevAccessMin Cell Level Function ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Number of multiframes of th BsPaMframs Channel related ParametersBTS TA Allowed TaAllowed Cell Level Function ParametBTS Protection period for access T3122 Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS Control channel MAX power lMsTxPwrMaxCch Cell Level Function ParametBTS Number of slots to spread tr TxInteger Cell Level Function Paramet

BTS Downlink discontinuous transDtxDwlink Cell Level Function ParametBTS Uplink discontinuous transmi DtxUplinkBcch Cell Level Function ParametBSC Dynamic HR Enable DynaHREnable BSC Level CS Part ParametBTS New setup cause indication NECI Cell Level Function ParametBTS Use cell dynamic HR parametUseCellDynHRPara Cell Level Function ParametBTS Multiband report indication MulbandReport HO Related ParametersBTS Interval of SDCCH re-sendin T3105d HO Related ParametersBTS Number of zero allowed in A ZeroAllowed HO Related ParametersBTS Interval of TCH re-sending T3105f HO Related ParametersBTS Neighboring cell Sample counNCell HO Related ParametersBTS Preprocessing indication Preprocess HO Related ParametersBTS MIN interval between inter-ceHoMinInterval HO Related ParametersBTS Prior layer selecting parameteLayerPriority HO Related ParametersBTS Synchronization HoPatternInd1 HO Related ParametersBTS Asynchronization HoPatternInd2 HO Related ParametersBTS Pseudo-synchronization HoPatternInd3 HO Related ParametersBTS Pre-synchronization HoPatternInd4 HO Related ParametersBTS Allow SDCCH handover HoControl1 HO Related ParametersBTS Allow inter-cell handover atteHoControl2 HO Related ParametersBTS Allow inter-cell handover att HoControl3 HO Related ParametersBTS Allow handover due to distan HoControl4 HO Related ParametersBTS Allow standard PBGT handovHoControl5 HO Related ParametersBTS Allow automatic handover baseHoControl6 HO Related ParametersBTS Allow handover based on direHoControl7 HO Related ParametersBTS Allow handover based on homoHoControl8 HO Related ParametersBTS Allow intra-cell handover in HoControl9 HO Related ParametersBTS Allow intra-cell handover in HoControl10 HO Related ParametersBTS Allow adjacent cells handoveHoControl11 HO Related ParametersBTS Allow dynamic adjustment of HoControl12 HO Related ParametersBTS Allow rapid handover HoControl13 HO Related ParametersBTS Allow Macro-Micro delay hanHoControl14 HO Related ParametersBTS Allow Micro-Macro delay hanHoControl15 HO Related ParametersBTS Allow internal handover baseHoControl16 HO Related ParametersBTS Allow quality handover in upliHoControl19 HO Related ParametersBTS Allow level handover in uplinkHoControl20 HO Related ParametersBTS Allow quality handover in dowHoControl21 HO Related ParametersBTS Allow level handover in downlHoControl22 HO Related ParametersBTS Allow DL rapid handover HoControl23 HO Related ParametersBTS Level offset during penalty PenaltyLevOffset HO Related ParametersBTS Penalty time for handover failHoFailPenaltyTime HO Related ParametersBTS Difference of dynamic priorityDynPrioOffset HO Related ParametersBTS MAX resending times for physNY1 HO Related ParametersBTS CBC supported SmsCbUsed Cell Level Function ParametBTS Overload sending period OverloadPrd Cell Level Function ParametBTS BA Show BcchBaInd Cell Level Function ParametBTS LAPDM timer used for controT200_0 Cell Level Function ParametBTS Lapdm Timer for controlling faT200_1 Cell Level Function ParametBTS Lapdm Timer for controlling f T200_2 Cell Level Function ParametBTS Lapdm Timer for controlling sT200_3 Cell Level Function ParametBTS Lapdm Timer for controlling T200_4 Cell Level Function ParametBTS LAPDM timer used for controT200_5 Cell Level Function ParametBTS Power offset indication POWEROFFSETIND Cell Level Function ParametBTS Cell Support Encryption Mod CipherMode-0- CipherMCell Level Function ParametBTS NO of candidate cells for ha CandidateNum Cell Level Function ParametBTS Power offset PowOffset Cell Level Function ParametBTS Lapdm Timer for controlling sT200_6 Cell Level Function ParametBTS Subcell used SubCellUsed Cell Level Function Paramet

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 6: NPT Template ZTE 2G_Parameter_10-Oct-2012

BSC External UTRAN ID EcUTRANId External Cell ParametersBSC UTRAN cell type CellTypeUTRAN External Cell ParametersBSC MCC MCC BSC Level CS Part ParametBSC MNC MNC BSC Level CS Part ParametBSC UTRAN cell Frequency ArfcnUTRAN External Cell ParametersBSC LAC LAC Operation Control ParameterBSC RNC ID RNC_Id External Cell ParametersBSC C ID C_Id External Cell ParametersBSC Scrambling code or Cell Par ScCodeCellPara External Cell ParametersBSC TX diversity indication DiverSity External Cell ParametersBSC AMR Half Active Codec Set AmrHalfAcs BSC Level CS Part ParametBSC Thresholds of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrICM BSC Level CS Part ParametBSC Start mode AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBSC AMR full Active Codec Set AmrFullAcs BSC Level CS Part ParametBSC Threshold of AMR AmrThresholds BSC Level CS Part ParametBSC Hysteresis of AMR AmrHysteresis BSC Level CS Part ParametBSC Initial codec mode IsAmrlCM BSC Level CS Part ParametBSC Startmode codec AmrStartMode BSC Level CS Part ParametBSC Enable noise control IsAmrNscb BSC Level CS Part ParametBTS CCCH Load Indication PeriodCcchLoadIndPrd Cell Level Function ParametBTS CCCH load indication (RACHCcchLoadINDThs_0 Cell Level Function ParametBTS CCCH load indication (PA CcchLoadINDThs_1 Cell Level Function ParametBTS Average bursts count surve AvgSlots Cell Level Function ParametBTS RACH Receiving signal level tRachBuysThs Cell Level Function ParametBTS Cell Type CellType Cell Level Property ParametBTS LAC LAC Operation Control ParameterBTS CI CI Operation Control ParameterBTS NCC NCC Cell Level Property ParametBTS BCC BCC Cell Level Property ParametBTS Frequency Band FreqBand Cell Level Property ParametBTS ARFCN list CaArfcnList Cell Level Property ParametBTS Common control channel confCcchConf Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS NSEI NSEI Cell Level Property ParametBTS BVCI BVCI Cell Level Property ParametBTS UPU unit UPU unit Cell Level Property ParametBTS Blocks for PAGCH in FramesBsAgBlkRes Cell Level Property ParametBTS TA Max TaMax Cell Level Function ParametBTS Access Control Level AccCtrlClass Cell Level Function ParametBTS Cell bar access CellBarAccess Cell SelectionBTS Cell bar qualify CellBarQualify Cell SelectionBTS MIN received signal level to RxLevAccessMin Cell Level Function ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Number of multiframes of th BsPaMframs Channel related ParametersBTS TA Allowed TaAllowed Cell Level Function ParametBTS Protection period for access T3122 Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS MAX number of re-transmittinMretrans Cell Level Function ParametBTS Control channel MAX power lMsTxPwrMaxCch Cell Level Function ParametBTS Number of slots to spread tr TxInteger Cell Level Function Paramet

BTS Downlink discontinuous transDtxDwlink Cell Level Function ParametBTS Uplink discontinuous transmi DtxUplinkBcch Cell Level Function ParametBSC Dynamic HR Enable DynaHREnable BSC Level CS Part ParametBTS New setup cause indication NECI Cell Level Function ParametBTS Use cell dynamic HR parametUseCellDynHRPara Cell Level Function ParametBTS Multiband report indication MulbandReport HO Related ParametersBTS Interval of SDCCH re-sendin T3105d HO Related ParametersBTS Number of zero allowed in A ZeroAllowed HO Related ParametersBTS Interval of TCH re-sending T3105f HO Related ParametersBTS Neighboring cell Sample counNCell HO Related ParametersBTS Preprocessing indication Preprocess HO Related ParametersBTS MIN interval between inter-ceHoMinInterval HO Related ParametersBTS Prior layer selecting parameteLayerPriority HO Related ParametersBTS Synchronization HoPatternInd1 HO Related ParametersBTS Asynchronization HoPatternInd2 HO Related ParametersBTS Pseudo-synchronization HoPatternInd3 HO Related ParametersBTS Pre-synchronization HoPatternInd4 HO Related ParametersBTS Allow SDCCH handover HoControl1 HO Related ParametersBTS Allow inter-cell handover atteHoControl2 HO Related ParametersBTS Allow inter-cell handover att HoControl3 HO Related ParametersBTS Allow handover due to distan HoControl4 HO Related ParametersBTS Allow standard PBGT handovHoControl5 HO Related ParametersBTS Allow automatic handover baseHoControl6 HO Related ParametersBTS Allow handover based on direHoControl7 HO Related ParametersBTS Allow handover based on homoHoControl8 HO Related ParametersBTS Allow intra-cell handover in HoControl9 HO Related ParametersBTS Allow intra-cell handover in HoControl10 HO Related ParametersBTS Allow adjacent cells handoveHoControl11 HO Related ParametersBTS Allow dynamic adjustment of HoControl12 HO Related ParametersBTS Allow rapid handover HoControl13 HO Related ParametersBTS Allow Macro-Micro delay hanHoControl14 HO Related ParametersBTS Allow Micro-Macro delay hanHoControl15 HO Related ParametersBTS Allow internal handover baseHoControl16 HO Related ParametersBTS Allow quality handover in upliHoControl19 HO Related ParametersBTS Allow level handover in uplinkHoControl20 HO Related ParametersBTS Allow quality handover in dowHoControl21 HO Related ParametersBTS Allow level handover in downlHoControl22 HO Related ParametersBTS Allow DL rapid handover HoControl23 HO Related ParametersBTS Level offset during penalty PenaltyLevOffset HO Related ParametersBTS Penalty time for handover failHoFailPenaltyTime HO Related ParametersBTS Difference of dynamic priorityDynPrioOffset HO Related ParametersBTS MAX resending times for physNY1 HO Related ParametersBTS CBC supported SmsCbUsed Cell Level Function ParametBTS Overload sending period OverloadPrd Cell Level Function ParametBTS BA Show BcchBaInd Cell Level Function ParametBTS LAPDM timer used for controT200_0 Cell Level Function ParametBTS Lapdm Timer for controlling faT200_1 Cell Level Function ParametBTS Lapdm Timer for controlling f T200_2 Cell Level Function ParametBTS Lapdm Timer for controlling sT200_3 Cell Level Function ParametBTS Lapdm Timer for controlling T200_4 Cell Level Function ParametBTS LAPDM timer used for controT200_5 Cell Level Function ParametBTS Power offset indication POWEROFFSETIND Cell Level Function ParametBTS Cell Support Encryption Mod CipherMode-0- CipherMCell Level Function ParametBTS NO of candidate cells for ha CandidateNum Cell Level Function ParametBTS Power offset PowOffset Cell Level Function ParametBTS Lapdm Timer for controlling sT200_6 Cell Level Function ParametBTS Subcell used SubCellUsed Cell Level Function Paramet

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 7: NPT Template ZTE 2G_Parameter_10-Oct-2012

BTS Downlink discontinuous transDtxDwlink Cell Level Function ParametBTS Uplink discontinuous transmi DtxUplinkBcch Cell Level Function ParametBSC Dynamic HR Enable DynaHREnable BSC Level CS Part ParametBTS New setup cause indication NECI Cell Level Function ParametBTS Use cell dynamic HR parametUseCellDynHRPara Cell Level Function ParametBTS Multiband report indication MulbandReport HO Related ParametersBTS Interval of SDCCH re-sendin T3105d HO Related ParametersBTS Number of zero allowed in A ZeroAllowed HO Related ParametersBTS Interval of TCH re-sending T3105f HO Related ParametersBTS Neighboring cell Sample counNCell HO Related ParametersBTS Preprocessing indication Preprocess HO Related ParametersBTS MIN interval between inter-ceHoMinInterval HO Related ParametersBTS Prior layer selecting parameteLayerPriority HO Related ParametersBTS Synchronization HoPatternInd1 HO Related ParametersBTS Asynchronization HoPatternInd2 HO Related ParametersBTS Pseudo-synchronization HoPatternInd3 HO Related ParametersBTS Pre-synchronization HoPatternInd4 HO Related ParametersBTS Allow SDCCH handover HoControl1 HO Related ParametersBTS Allow inter-cell handover atteHoControl2 HO Related ParametersBTS Allow inter-cell handover att HoControl3 HO Related ParametersBTS Allow handover due to distan HoControl4 HO Related ParametersBTS Allow standard PBGT handovHoControl5 HO Related ParametersBTS Allow automatic handover baseHoControl6 HO Related ParametersBTS Allow handover based on direHoControl7 HO Related ParametersBTS Allow handover based on homoHoControl8 HO Related ParametersBTS Allow intra-cell handover in HoControl9 HO Related ParametersBTS Allow intra-cell handover in HoControl10 HO Related ParametersBTS Allow adjacent cells handoveHoControl11 HO Related ParametersBTS Allow dynamic adjustment of HoControl12 HO Related ParametersBTS Allow rapid handover HoControl13 HO Related ParametersBTS Allow Macro-Micro delay hanHoControl14 HO Related ParametersBTS Allow Micro-Macro delay hanHoControl15 HO Related ParametersBTS Allow internal handover baseHoControl16 HO Related ParametersBTS Allow quality handover in upliHoControl19 HO Related ParametersBTS Allow level handover in uplinkHoControl20 HO Related ParametersBTS Allow quality handover in dowHoControl21 HO Related ParametersBTS Allow level handover in downlHoControl22 HO Related ParametersBTS Allow DL rapid handover HoControl23 HO Related ParametersBTS Level offset during penalty PenaltyLevOffset HO Related ParametersBTS Penalty time for handover failHoFailPenaltyTime HO Related ParametersBTS Difference of dynamic priorityDynPrioOffset HO Related ParametersBTS MAX resending times for physNY1 HO Related ParametersBTS CBC supported SmsCbUsed Cell Level Function ParametBTS Overload sending period OverloadPrd Cell Level Function ParametBTS BA Show BcchBaInd Cell Level Function ParametBTS LAPDM timer used for controT200_0 Cell Level Function ParametBTS Lapdm Timer for controlling faT200_1 Cell Level Function ParametBTS Lapdm Timer for controlling f T200_2 Cell Level Function ParametBTS Lapdm Timer for controlling sT200_3 Cell Level Function ParametBTS Lapdm Timer for controlling T200_4 Cell Level Function ParametBTS LAPDM timer used for controT200_5 Cell Level Function ParametBTS Power offset indication POWEROFFSETIND Cell Level Function ParametBTS Cell Support Encryption Mod CipherMode-0- CipherMCell Level Function ParametBTS NO of candidate cells for ha CandidateNum Cell Level Function ParametBTS Power offset PowOffset Cell Level Function ParametBTS Lapdm Timer for controlling sT200_6 Cell Level Function ParametBTS Subcell used SubCellUsed Cell Level Function Paramet

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 8: NPT Template ZTE 2G_Parameter_10-Oct-2012

BTS GPRS service supported PSSUPPORT Cell Level PS Part ParameteBTS Periodical location updating t T3212 OthersBTS NCC permitted NccPermitted Cell Level Function ParametBTS Emergency call allowed EmergencyCall Cell Level Function ParametBTS IMSI attachdetach allowed ImsIadAllowed Cell Level Function ParametBTS Call re-establishment allowedCallReestablish Cell Level Function ParametBTS Early category classmark senECSC Cell Level Function ParametBTS Allowed FACCH call setup aftFacchCallInd_0 Cell Level Function ParametBTS Allowed FACCH call setup w FacchCallInd_1 Cell Level Function ParametBTS Allowed call setup on FACCHFacchCallInd_2 Cell Level Function ParametBTS Allowed call reestablished FacchCallInd_3 Cell Level Function ParametBTS Frequency band of subcell SubFreqBand Cell Level Function ParametBTS Periodical location updating t T3212 Cell Level Function ParametBTS SI13 sending position SI3LOCATE Cell Level PS Part ParameteBTS Packet access priority thresh PriAcThr Cell Level PS Part ParameteBTS CCCH SplitPgCycle support SpgcSuport Cell Level PS Part ParameteBTS Packet control acknowledgmeCtraCKType Cell Level PS Part ParameteBTS Additional reselect parameter AddResPI2 Cell Level PS Part ParameteBTS Packet System Information SendSpeed Cell Level PS Part ParameteBTS Overload report period on OvLoadPer Cell Level PS Part ParameteBTS Link error counter RLTimeout Cell Level PS Part ParameteBTS PRACH receive signal level t PrachBusyT Cell Level PS Part ParameteBTS Interval of reselecting the sa T_RESEL PBCCH relatedBTS C31 hysteresis C31_HYST PBCCH relatedBTS GPRS cell reselection hyster ReselHys PBCCH relatedBTS Routing reselection hysteresiRaReselHys PBCCH relatedBTS Random access attempt permRadAcRetry PBCCH relatedBTS Usage of cell reselection offs C32_QUAL PBCCH relatedBTS GPRS access minimal signal RxLevAsMin PBCCH relatedBTS Access Persist Level PersistLev Cell Level PS Part ParameteBTS Priority threshold PRIO_THR Cell Level PS Part ParameteBTS Extended paging supported EpageMode Cell Level PS Part ParameteBTS Access burst type AccessType Cell Level PS Part ParameteBTS Average measuring bursts MeaAvgSlot Cell Level PS Part ParameteBTS Buffer threshold of paging m PccchIndTh_0 Cell Level PS Part ParameteBTS MAX Times of Attempt MaxRetrans Cell Level PS Part ParameteBTS Access control ACCESSCTRL Operation Control ParameterBTS Additional reselection parameAdditionReselPI CR Related ParametersBTS Cell reselection parameter indCellReselPI CR Related ParametersBTS Temporary offset TemporaryOffset CR Related ParametersBTS Penalty time PenaltyTime CR Related ParametersBTS Cell reselecting hysteresis le ReselHysteresis CR Related ParametersBTS Directed retry indication DrInd_0 Cell Level Function ParametBTS Queue allowed when assign QueueInd_0 Cell Level Function ParametBTS Queue allowed when handovQueueInd_1 Cell Level Function ParametBTS Preemption allowed when assPreemptionInd_0 Cell Level Function ParametBTS Preemption allowed when haPreemptionInd_1 Cell Level Function ParametBTS Use cell EMLPP Threshold UseCellEmlppThs Cell Level Function ParametBTS When assigned forced handoForcedHoInd_0 Cell Level Function ParametBTS When handover forced handoForcedHoInd_1 Cell Level Function ParametBTS BCCH switch allowed CanBcchExch Cell Level Function ParametBTS SDCCH dynamic configuratioCanSdcchDyn Cell Level Function ParametBTS Minimal resource threshold ResourceThs HO Related ParametersBTS Interference averaging periodInterfAvgPrd Cell Level Function ParametBTS Interference Band Boundary InterfBoundary Cell Level Function ParametBTS Radio link failure criterion ConFailCriterion Cell Level Function ParametBTS Receiving level threshold RxLevThs Cell Level Function Paramet

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 9: NPT Template ZTE 2G_Parameter_10-Oct-2012

BTS Receiving quality threshold RxQualThs Cell Level Function ParametBTS Radio link failure checking peRxLevQualprd Cell Level Function ParametBTS BCCH ARFCN BcchArfcn External Cell ParametersBTS RACOLOR RaColor Cell Level Property ParametBTS Minimal number of idle CS c CsChansThs Cell Level PS Part ParameteBTS Is support CCN mode CCNActive Cell Level PS Part ParameteBTS Is cell support system messagSIStatusInd Cell Level PS Part ParameteBTS PSI status supported PsiStatInd Cell Level PS Part ParameteBTS Is the cell support extendabl EXT_UTBF Cell Level PS Part ParameteBTS Uplink delay time ULDelayTime Cell Level PS Part ParameteBTS Downlink delay time DLDelaytime Cell Level PS Part ParameteBTS Extend uplink TBF time ExtULTBFTime Cell Level PS Part ParameteBTS Interval number of GPRS TB GPRSDlRRBPINTERVACell Level PS Part ParameteBTS Interval number of EGPRS T EGPRSDlRrbpInterVal Cell Level PS Part ParameteBTS Interval number of GPRS TBFGPRSUlAckInterVal Cell Level PS Part ParameteBTS Interval number of EGPRS TBEGPRSUlAckInterVal Cell Level PS Part ParameteBTS Uplink measure report periodUlmeasureperiod Cell Level PS Part ParameteBTS Calculating period of load o LoadPer Cell Level PS Part ParameteBTS PSI1 send period PSI1REPPER Cell Level PS Part ParameteBTS Selective granularity USFGranularity Cell Level PS Part ParameteBTS T3168 T3168 Cell Level PS Part ParameteBTS T3192 T3192 Cell Level PS Part ParameteBTS DRX mode holding time DrxTimeMax Cell Level PS Part ParameteBTS MAX blocks transmission in BsCvMax Cell Level PS Part ParameteBTS N3102 decrease step PanDec Cell Level PS Part ParameteBTS N3102 increase step PanInc Cell Level PS Part ParameteBTS N3102 MAX PanMax Cell Level PS Part ParameteBTS GPRS phones init code can InitAttachExch_0 Cell Level PS Part ParameteBTS Packet idle mode NcRepPerI Cell Level PS Part ParameteBTS Packet transmission mode NcRepPerT PS Cell reselection relatedBTS Extended measurement reportMeaOrder Cell Level PS Part ParameteBTS Network control order CtrlOrder Cell Level PS Part ParameteBTS NC hold time in non-drx mod NcNoDrxPer Cell Level PS Part ParameteBTS Extended measurement reportExMeaOrder Cell Level PS Part ParameteBTS Type of extended measuremenExtRepType Cell Level PS Part ParameteBTS Report period of extended m ExtRepPer Cell Level PS Part ParameteBTS Filter period in the packet id T_AVG_W Cell Level PS Part ParameteBTS Filter period in packet trans T_AVG_T Cell Level PS Part ParameteBTS PSI4 sending mark Psi4Send Cell Level PS Part ParameteBTS Power control measurement PcMeasChan Cell Level PS Part ParameteBTS Power control parameter Alpha Cell Level PS Part ParameteBTS Filter constant of power contrN_AVG PS power controlBTS GPRS MAX initial access signMsTxMaxCch GERAN external cell parameBTS LSA Offset LSA_Offset Cell Level PS Part ParameteBTS PAGCH reserved blocks PagBlkRes Cell Level PS Part ParameteBTS PBCCH reserved blocks PbcchBlks Cell Level PS Part ParameteBTS PRACH reserved blocks PrachBlks Cell Level PS Part ParameteBTS Interval range of packet acceTxInt Cell Level PS Part ParameteBTS Interval period of packet acc S Cell Level PS Part ParameteBTS Support DTM DTMSupport Cell Level PS Part ParameteBTS Max number of GTTP Lapdm GttpLapdmNum Cell Level PS Part ParameteBTS Support EGPRS packet channEgprsPacketChreq Cell Level PS Part ParameteBTS Support uplink ldquoLA+IRrdquo qualityIrSupportUp Cell Level PS Part ParameteBTS Take Preemptivetrans bit fuPREEMPTIVETRANS Cell Level PS Part ParameteBTS Average filter period for upli BEPperiodUp Cell Level PS Part ParameteBTS Average filter period for dow BEPperiodDown Cell Level PS Part ParameteBTS EGPRS phone quality measuLinkQuameaMode Cell Level PS Part Paramete

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 10: NPT Template ZTE 2G_Parameter_10-Oct-2012

BTS EGPRS Phone Init Coding EGPRS Phone Init CodiCodec mode adjustmentBTS EGPRS phones init code canInitAttachExch_1 Cell Level PS Part ParameteBTS TRX ID TrxId TRX Level Property ParametBTS TRX Type TrxType TRX Level Property ParametBTS SubCell ID SubCellId TRX Level Property ParametBTS Priority TrxPriority TRX Level Property ParametBTS BCCH Carrier Frequency IsBcchMark TRX Level Property ParametBTS Static Power Level PwRreduction TRX Level Property ParametBTS Support Fhs Support Fhs TRX Level Property ParametBTS TsChannelComb TsChannelComb Channel related ParametersBTS TSC TSC Channel related ParametersBTS MAIO MAIO Channel related ParametersBTS Dynamic ts Dynamic ts Channel related ParametersBTS Uplink level Weight PcUlLevWeight PC Related ParametersBTS Downlink level Weight PcdlLevWeight PC Related ParametersBTS Uplink quality Weight PcUlIQualWeight PC Related ParametersBTS Downlink quality Weight PcDlIQualWeight PC Related ParametersBTS Increase uplink level ThreshoPCULINCLLEVTHSThsPC Related ParametersBTS Increase uplink level Value PPCULINCLLEVTHSP PC Related ParametersBTS Increase uplink level Value NPCULINCLLEVTHSN PC Related ParametersBTS Decrease uplink level ThreshPCULREDLEVTHSThs PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSP PC Related ParametersBTS Decrease uplink level Value PCULREDLEVTHSN PC Related ParametersBTS Increase uplink quality Thres PCULINCLQUALTHSThPC Related ParametersBTS Fast average indication FastAvg PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSP PC Related ParametersBTS Increase uplink quality Value PCULINCLQUALTHSN PC Related ParametersBTS Decrease downlink quality ThPCDLREDQUALTHSThPC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSP PC Related ParametersBTS Decrease downlink quality VaPCDLREDQUALTHSN PC Related ParametersBTS Uplink power control allowed PwrControlUl PC Related ParametersBTS Downlink power control allowPwrControlDl PC Related ParametersBTS Power decreasing step (2 4 PwrRedStep PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level of MS MsTxPwrMin PC Related ParametersBTS MIN power level of BS BsTxPwrMin PC Related ParametersBTS Expected signal intensity of SS_BTS Cell Level PS Part ParameteBTS Uplink power control strategyUlPwCtrl Cell Level PS Part ParameteBTS Downlink power control modePwCtrlMode Cell Level PS Part ParameteBTS Power control level PwCtrlLev Cell Level PS Part ParameteBTS Power descending of PDCH tP0 Cell Level PS Part ParameteBTS Intra-handover uplink receiveIntraHoUlLevThs HO Related ParametersBTS Uplink interference quality offQOffSetUl HO Related ParametersBTS Uplink interference level offseSOffSetUl HO Related ParametersBTS Downlink interference quality QOffsetDl HO Related ParametersBTS Downlink interference level ofSOffSetDl HO Related ParametersBTS Invalid intra-handover time TMaxIHo HO Related ParametersBTS MAX count of invalid intra-ha MaxIHo HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevN HO Related ParametersBTS Intra-handover uplink receiveIntraHoUlLevP HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevThs HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevN HO Related ParametersBTS Intra-handover downlink receiIntraHoDlLevP HO Related ParametersBTS Good CI Value N GoodCiN HO Related ParametersBTS Good CI Value P GoodCiP HO Related ParametersBTS Allow force transfer handoverHoControl17 HO Related Parameters

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 11: NPT Template ZTE 2G_Parameter_10-Oct-2012

BTS Dual band power offset DuleBandOffset HO Related ParametersBTS The MAX of path loss PathLossMax HO Related ParametersBTS The MIN of path loss PathLossMin HO Related ParametersBTS The MAX of time advance SubCellTAMax HO Related ParametersBTS The MIN of time advance SubCellTAMin HO Related ParametersBTS N value of subcell handover SubCellN HO Related ParametersBTS P value of subcell handover SubcellP HO Related ParametersBTS Bad CI Value N BadCiN HO Related ParametersBTS Bad CI Value P BadCiP HO Related ParametersBTS Distance Sample count Distance HO Related ParametersBTS Distance handover Value_N Distance HO Related ParametersBTS Max Time Advance Threshol DistanceThs HO Related ParametersBTS PBGT difference PbgtOffset HO Related ParametersBTS Layer control value for handovTrafficHoLayrCtl HO Related ParametersBTS Threshold of traffic for hando TrafficThs HO Related ParametersBTS Traffic handover threshold TrafficLevThs HO Related ParametersBTS MAX path loss threshold on f MaxLossThs HO Related ParametersBTS MAX time advance threshold MaxTaThs HO Related ParametersBTS N value of force handover HoForceN HO Related ParametersBTS P value of force handover HoForceP HO Related ParametersBTS Punishment period of UTRAN HoFailPenalTmUTRAN 2G3G Related ParametersBTS Slide window size for calcul HoWindowUTRAN 2G3G Related ParametersBTS Number that measurement valHoWindowUTRAN 2G3G Related ParametersBTS UTRAN handover ServiceHo 2G3G Related ParametersBTS Inter system handover suppoInterSysRdCtrl 2G3G Related ParametersBTS Directed retry to UTRAN cell InterSysHoCtrl 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_THS_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCPThsFDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Threshold when UE performs Qsearch_C 2G3G Related ParametersBTS Initial parameter instead of QsearchCInit 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_P_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_P_TDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTRAHoEcNo_N_FDD 2G3G Related ParametersBTS Handover from GSM to UTR HoRSCP_N_TDD 2G3G Related ParametersBTS Channel location of si2quaterSI2QuaterPos 2G3G Related ParametersBTS CS measurement type reportReportTypeCS 2G3G Related ParametersBTS Measurement threshold of UEQsearch_I 2G3G Related ParametersBTS CS number of same frequency SvrBandRprtCS 2G3G Related ParametersBTS CS class of reported quantiti FDDrepQntCS 2G3G Related ParametersBTS MIN EcNo of UTRAN reselectFDD_Qmin 2G3G Related ParametersBTS CS MAX number of UTRANFDDFDDMulRatarrptCS 2G3G Related ParametersBTS FDD reselection offset FDD_Qoffset 2G3G Related ParametersBTS Require UE to send UTRAN cECSC_3G 2G3G Related ParametersBTS CS measurement reporting ratReportRateCS 2G3G Related ParametersBTS CS multiband report indicatioMulBndRprtCS 2G3G Related ParametersBTS CS offset which is added wheScaleOrdCS 2G3G Related ParametersBTS TDD reselection offset TDD_Qoffset 2G3G Related ParametersBTS CS MAX number of UTRANTDDTDDMulRatRrptCS 2G3G Related ParametersBTS CS UE report invalid cell leveInvldBSICRprtCS 2G3G Related ParametersBTS PS offset which is added whenScaleOrdPS 2G3G Related ParametersBTS PS measurement type report ReportTypePS 2G3G Related ParametersBTS PS number of same frequency SvrBandRprtPS 2G3G Related ParametersBTS PS measurement reporting ratReportRatePS 2G3G Related ParametersBTS PS MAX number of UTRANFDDFDDMulRatRrptPS 2G3G Related Parameters

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 12: NPT Template ZTE 2G_Parameter_10-Oct-2012

BTS PS multiband report indicatio MulBndRprtPS 2G3G Related ParametersBTS TDD multi report PS TDDMulRatRrptPS 2G3G Related ParametersBTS PS UE report invalid cell leveInvldBSICRprtPS 2G3G Related ParametersBTS PS UE search UTRAN adjacent SEARCHPRIOPS3G 2G3G Related ParametersBTS Interference cell No IntfObjectId Adjacent Related ParameterBTS Related cell DN RelationDN Adjacent Related ParameterBTS Adjacent cell reselection and HoResObjectId Adjacent Related ParameterBTS Priority of handover Hopriority Adjacent Related ParameterBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS Minimal Threshold of Quality HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS Priority of adjacent cell rep RepPrioCS Adjacent Related ParameterBTS PS adjacent cell report prioritRepPrioPS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell handover objectHoObjectId Adjacent Related ParameterBTS Priority of handover HoPriority Adjacent Related ParameterBTS MAX power level of MS MsTxPwrMax PC Related ParametersBTS MIN power level for handove RxLevMin Adjacent Related ParameterBTS MIN threshold of signal leve HoMarginPbgt Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxLev Adjacent Related ParameterBTS MIN threshold of signal level HoMarginRxQual Adjacent Related ParameterBTS MAX level difference of force MaxForceHoDiff Adjacent Related ParameterBTS CS priority of adjacent cell RepPrioCS Adjacent Related ParameterBTS PS priority of adjacent cell RepPrioPS Adjacent Related ParameterBTS Handover force resource threHoForceResThs Adjacent Related ParameterBTS Neighboring cell layer NCellLayer Adjacent Related ParameterBTS CS adjacent cell report prioritRepPrioCS Adjacent Related ParameterBTS Is related cell IsRelatedCell Adjacent Related ParameterBTS Is handover forced neighbor cIsHoForceNcell Adjacent Related ParameterBTS Adjacent cell report priority RepPrioPS Adjacent Related ParameterBTS RSCP offset handover to UTRHoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover to UTRHoEcNoOffsetUTRAN Adjacent Related ParameterBTS UTRAN HO ID HoObjectId Adjacent Related ParameterBTS RSCP offset handover HoRSCPOffsetUTRAN Adjacent Related ParameterBTS EcNo offset handover HoEcNoOffsetUTRAN Adjacent Related ParameterBTS Priority RepPrioCS Adjacent Related ParameterBTS Adjacent UTRAN cell reselectRSObjectId Adjacent Related ParameterBTS PS priority of adjacent cells RepPrioPS Adjacent Related Parameter

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 13: NPT Template ZTE 2G_Parameter_10-Oct-2012

Description Range Value amp Unit Default valueOptimization value

GSM900Min Max

YesNo Yes Yes

YesNo No Yes

2010-1-3 1

10 - 300 100bps 80 80 80

None 1 - 100 80 80 80

None 1 - 100 80 80 80

0 - 65535 10ms 3000 800 800

0 - 65535 10ms 3000 1400 1400

None 1 - 20 ms 10 10 10

100 (gt) 85 85 85 85 85 85 85 85 85

0 - 255 20 20 20 20 20 20 20 20 20

0 - 100 (gt) 25 25 25 25 25 25 25 25 25

9 - 255 10 50 50

0 - 255 10 10 10

0 - 255 10 15 15

If this cell supports dynamic HR YesNo No YES

When channel occupation exceeds this threshold it will apply for0 - 100 (ge) 60 50 50

Specify the frequency supported It is unmodifiable after being DCS1800 PCS1900 DCS1800 -

YesNo No -

Confusion message is bidirectional If the received message coYesNo No -

According to GSM specifications intra-BSC inter-cell handover YesNo Yes Yes

It describes if external redirection allows assignment failure YesNo No No

In load indication process BSC sends BSSAP LOAD INDICATION 0 - 255 10s 18 -

In load indication process BSC sends BSSAP LOAD INDICATION m0 - 65530 100ms 1500 -

0 - 100 30 -

200 - 5000 Byte (ge) 2000 2500 2500

1 - 255 3 -

PGSM (1 - 124) EGSM 0ampamp0 -

This interface is identified by the user Character string with th - -

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

For mobile network code the user can select whether supporting2 Digits 3 Digits 2 digits -

MNC consists of three digits of decimal number It uniquely ide 0 -

OMP board is used as the IP address to establish a link This p Input IP with 4 bytes xx 1290311 -

xxxxxxxxxxxx xx is 00 00 00 00 00 00 -

Input IP with 4 bytes xx 255000 -

Input IP with 4 bytes xx 0000 -

Input IP with 4 bytes xx 0000 -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

It is Greenwich Mean Time (GMT) configured according to thAll valid time zone GMT+08 00 -

The network type belonging to this office is defined by users o CTCN CMCN CUCN RL CTCN -

Signaling End Point (SEPSignaling End Point (SEP) -

YesNo Yes -

It is defined by the customer and set according to the network co1 - 253 1 -

Restart time when local signaling pint is STP 0 - 65535 ms 10000 -

BSC periodically performs time synchronization with the serve 16000 - 16284000 ms 1800000 -

It is IP address of SNTP server It synchronizes the clock of eacInput IP with 4 bytes xx 1290311 -

Test code functions as link test MTP sends test message (with teNo more than 15 charact - -

If CPU occupancy exceeds this threshold signaling trace is aut0 - 100 50 -

This parameter is broadcasted through SI13 YesNo No No

YesNo No Yes

It indicates R99 protocol version ID BSS considers this parameVersion of R98 or itrsquos be Version of R99 Version of R99

statistics timer overflows and discrepant range ofadjacent leaking rates is over CellFcThsstatistics timer overflows and discrepant rangeof adjacent leaking rates is over MsFcThsBSC has different flow control modes report flow control parameters to SGSN The modes are as follows 1 Mode 1 Report flow control parameters according to actual traffic on radio interface counted at BSC 2 Mode 2 Report flow control parameters according to max traffic that the cell can provide 3 Mode 3 Reserved Flow control mode 1 parameter is enabledif selecting mode 1 Flow control mode 2 parameter is enabled if selecting mode 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2R must be equal or over the set value in the

unit of 100 bps

the difference of the leakage ratio betweenthe two timers exceed CellFcThsfrom SGSN if the difference between twoleakage ratios exceeds MsFcThs

During data transmission of GRPR to reach the maximum radio throughput the network shall select the coding mode dynamically according to the data rate requirement and radio transmission quality Good radio transmission quality means that the probability of the retransmission of the error radio blocks is small In this time the coding mode that carries large data volume (that is high level coding mode) can be usedFor TBF (uplink and downlink) in the channel coding mode CSn (1=n=3) if the number of data blocks transmitted consecutively and correctly exceeds the predefined parameter Cn[n-1] the coding mode will be increased by one level Footnote 1 2 and 3 in the interface are coding conversion parameters among CS1-CS2 CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4coding conversion parameters among CS1-CS2CS2-CS3 and CS3 CS4then T3169 timer starts Network uses the TFIand USF resources when T3169 stopsN3103 exceeds the limiting N3103max Networkuses the TFI and USF resources when T3169 stopsthen T3169 timer starts Network uses the TFIand USF resources when T3169 stops

The load indication process informs the adjacent BSC of the cell load at border to provide more reference information in normal handover and the internal traffic handover of BSCThis parameter determines if load indication is available an also determines the validity of parameter Load valid timersquo and Load indication periodrsquo If this parameter is Norsquo (load indication process is disabled) the latter two parameters are invalid Otherwise they are valid

3 Period mode After BSC receives the BSSAP RESOURCE REQUEST message it will immediately return a BSSAP RESOURCE INDICATION message that contains the resource information After that BSC periodically sends the BSSAP RESOURCE INDICATION message If Periodicity IE in the BSSAP RESOURCE REQUEST message is not 0 then the period to send the message is the value of Periodicity IE multiplied by 100ms If Periodicity IE is 0 then the message is wrong and the whole BSSAP RESOURCE REQUEST message is regarded as wrong4 Stop mode After the BSSAP RESOURCE REQUEST message is received BSC immediately returns a BSSAP RESOURCE INDICATION message without any resource information as an acknowledgement And then it will no longer send the cell resource information to MSCfrom single timeslot to multiple timeslots for packetservice timeslot allocation)BSSAP RESET message repeats up to N times MSC ends the reset process and notifies OMS incase of no reply from BSC after N times Ndepends on this parameterInput the minimum and maximum value of broadcast range in the left and right blank and click Add to save this range Range of BARANG can be same for different global resourceNote input frequency range cant be crossed

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999

MAC address of OMP board default is 02082081610254 If 0 is filled in MAC address for OMP is generated based on default foreground rule which is 02082081610BUREAUNOIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) It is the subnet mask of the OMP IP addressIn single OS environment you can use default value no further setting required but for multiple OS environment (such as in a lab) default value may cause conflict (multiple OS environment refers to the environment with above 2 OS environment connected to a same HUB so address conflict may be caused) Infor5 is the IP address of gateway from OMP to iOMCRThis parameter can be kept unchanged default value is ok Only when other access shall be shielded by setting gateway user can configure itInfo6 is the IP address that iOMCR uses to setup link with OMPThis parameter can be kept unchanged If configuring it it shall be consistent with IP address of userdefined-zxgsmomcr-ftpip = in deploy-gsmomcr001_properties in background Server that is cell address

Type of signaling point is selected according to actual network condition which is consistent with the demands at MSC side Normal equipment is the signaling node such as BSC and MSC If application at upper layer of signaling exists signal is not transmitted Signaling transit point (STP) is used to aggregated and forwarded The equipment integrated with SEP and STEP functions is STEPFor peer office select SEP for signaling transit point select STP for both peer office and signaling transit point select STEPIt is used to determine whether the signaling point restart function shall be enabledNot required normally default value is ok

messages For more information refer to the protocol0460 1224 It is invalid when NMO is 1

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 14: NPT Template ZTE 2G_Parameter_10-Oct-2012

0 - 100 20 20 20

0 - 100 20 20 20

0 - 100 10 10 10

0 - 100 25 25 25

0 - 100 10 10 10

0 - 100 5 5 5

0 - 100 10 10 10

None 0 - 10 5 5 5

YesNo No Yes

Network operation mode Network operation mode 2 Network operation mode 2

It describes if BSC system supports satellite transmission at GbYesNo No

if extended RLC send window is allowed YesNo No No

YesNo No Yes

YesNo No Yes

0 - 100 (gt) 80 80 80

60 - 150 100ms 100 -

None Not retry Not retry

It monitors BSSGP blockingunblocking process Global proces10 - 300 100ms 30 30 30

10 - 1200 100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

10 - 300100ms 30 30 30

1 - 100 100ms 30 30 30

1 - 100 100ms 30 30 30

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

None 2 - 10 s 10 10 10

2010-3-10 3 3 3

2010-3-10 3 3 3

It is the timer that monitors the blockunblock procedure The con1 - 120s 10 10 10

1 - 120s 10 10 10

1 - 60 s 30 30 30

0 - 20 10 10 10

3 s 3 3 3

180 s 180 180 180

0 - 65535 10ms 500 500 500

0 - 65535 10ms 500 500 500

0 - 65535 10ms 51 152 152

0 - 65535 10ms 500 500 500

200 - 600 100ms 300 200 200

0 - 255 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

0 - 10 3 3 3

30 - 150 100ms 80 -

10 - 200 100ms 100 -

60 - 150 100ms 100 -

100 - 200 100ms 100 -

50 - 700 100ms 120 -

None 0 - 300 100ms 80 -

30 - 60 100ms 40 -

If BSC SCCP connection is abnormal while the circuits must 30 - 150 100ms 80 -

For some reasons (0 intervention equipment faultrecov 30 - 150 100ms 80 -

Uplink throughput weight value at Gb interface thedynamic Abis adjustment parameterDownlink throughput weight value at Gb interfacethe dynamic Abis adjustment parameterWeight value of EGPRS MS accessing request timesthe dynamic Abis adjustment parameterWeight value of high-bandwidth request times thedynamic Abis adjustment parameterWeight value of the highest bandwidth usage thedynamic Abis adjustment parameterproportion RS+RR+RA+RM+RB+RG+RE must beequal to 100proportion RS+RR+RA+RM+RB+RG+RE must beequal to 100

BSC is transferred to target cell and then it is sentto this MS after MS uplink TBF link is establishedpaging channel is available in the cell) in orderto receive CS or GPRS paging message

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

TBF shall be established immediately for CTRL_ACKfield in Packet Control Acknowledgement messagehas the functions when the cell supports for extendeduplink TBF Signaling TBF at this place refers to TBF established to transmit GMM signalingactivated If this threshold is exceeded Abis resourcecannot be allocated to PS service again2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processone times

two times

It monitors BSSGP reset procedure BSS initiates BVC reset process when BVC (including PTP BVC and signaling BVC) is required to be reset (disconnection to connection at Gbinterface and cell is changed from GPRS support to GPRSEDGE support) due to certain reason BSC repeats the procedure if SGSN does not return BVC RESET ACKNACK message The interval between the messages is the BVC reset retry timemessage The interval between the messages is thesuspend retry timeACKNACK message The interval between themessages is the resuming retry timeThe interval between the messages is the retrytime for radio access capability update2Timer stop it stops while receiving SGSN Create PFC message 3Timeout action retransfer for N times (configurable)2Timer stop it stops while receiving SGSN Modify BSS PFC Ack message 3 Timeout action retransfer for N times (configurable)

If the PTP BVC must be blocked due to OAMintervention or equipment faults (disable blockingunblocking the signaling BVC) BSS will first set the BVC status as Blocked and discard the uplink service data To notify SGSN to stop sending downlink data BSS initiates BVC blocking procedure BSC repeats BVC blocking procedure after sending BVC BLOCK message to SGSN If BSC fails to receive BVC BLOCK ACKNOWLEDGE message from SGSN in BSSGPT1 then BVC blocking repeats for a maximum of N timesBSC stops BVC blocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC BLOCKreceive the BVC UNBLOCK ACKNOWLEDGE messagefrom SGSN in BSSGPT1 then BVC unblocking repeats for a maximum of N times BSC stops BVC unblocking and notifies OMS for N times if there is no answer N depends on maximum retries of BVC UNBLOCK

It is timer that monitors reset procedure The conditions of timer start stop and timeout actions are as follows 1Timer start it starts if NS reset is initiated 2Timer stop it stops while receiving SGSN response 3Overtime actions Repeat NS reset process and the timer restarts3Timeout action send NS Alive messageon timeoutfor N times if there is no answer N dependson maximum retries of NS Alive3Timeout action retransfer for N times (configurable) NS alarm to OampM If reset response is receivedprior to timeout the timer is cleared2Timer stop condition None3Timeout action Release USF and TFI resources2In unacknowledged mode MS sends the PACKET CONTROL ACKNOWLEDGE message in the uplink block specified as per RRBP field T3191 terminates to enable only when the network receives the PACKET CONTROL ACKNOWLEDGE message before T3191 stops When T3193expires the network releases TBF The network also releases TBF when T3191 stops3Timeout action Release the TFI resourceThis parameter is bigger than timer T3192 to make sure the TFI of MS is unique at the same time2Timer stop condition None3Timeout action Release the TFI resourceduring which if this channel is occupied againthe timer shall be clearedsending BVC RESET message to SGSN and if BSC fails to receive BVC RESET ACKNOWLEDGE message from SGSN in BSSGPT2 BSC repeats the BVC RESET procedure for amaximum of N times BSC stops BVC RESET and notifies OMS for N times if there is no answer N depends on maximum retries of BVC RESETBSC repeats the blocking process when sending the NS BLOCK message to SGSN If NS BLOCK ACKNOWLEDGE message from SGSN fails to reach BSC within specified NS_T1 time then BSC repeats the NS BLOCK message for a maximum of N times BSC stops BLOCK procedure and notify OMS for N times if there is no answer N depends onmaximum retries of NS BLOCKBSC repeats UNBLOCK procedure after sending NS UNBLOCK message to SGSN If BSC fails to receive the NS BLOCK ACKNOWLEDGE message from SGSN within NS_T1 timer then BSC repeats the NS UNBLOCK message for a maximum of N times BSC stops UNBLOCK procedure and notify OMSfor N times if there is no answer N depends on maximum retries of NS UNBLOCKtimes if there is no answer N depends onmaximum suspending retriesN times if there is no answer N depends on themaximum times of resuming retryCapabilities Update procedure and notify OMS Ndepends on the maximum update retry timesis not received still after trying DownLoadBSSPRCMax+1 the process is completed and inform OampMBSS PFC Ack is not received still after trying ModifyBssPFCMax +1 the process is completed and informOampMThis parameter is T1 timer BSS blocksunblocks a terrestrial circuit and sends BLOCKUNBLOCK message to MSC due to various reasons (such as 0 equipment failurerecovery radio resources unavailableavailable) T1 timer sets the time interval between BLOCKUNBLOCK ACKNOWLEDGE message sent from MSC to BSC and BLOCKUNBLOCK message T1 is used to identify it during this periodThis timer is configured to prevent from signal instantaneous disconnection and wrong actionsIf disconnection duration of no7 link exceeds timer protective time global resetting is issued If no signaling point reachable event is received during delay time no7 link is considered as disconnection and global resetting process begins if reachable signaling point is received during delay time no7 link is considered as instantaneous disconnection2 Timer stop condition The BSSAP RESET ACKNOWLEDGE message from MSC is received3 Timeout action If T4 expires BSC will repeat the whole processTimer start it starts when RANCS sends the HANDOVER REQUIRED message to MSCTimer stop it stops when RANCS instance receives HANDOVER COMMAND response from MSCTimer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externallyTimer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed)

2 Timer Stop T13 timer suspends when SCCP receives a SSPSPI message3 Overtime Action If this timer is overtime BSS will send BSSAP RESET ACKNOWLEDGEMENT message to MSC

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 15: NPT Template ZTE 2G_Parameter_10-Oct-2012

20 - 50 100ms 20 20 20

20 100ms 20 20 20

20 - 50 100ms 30 -

20 - 60 100ms 30 -

0 - 300 100ms 110 110 110

0 - 300 100ms 70 70 70

20 - 50 100ms 40 -

30 - 100 100ms 60 -

10 - 80 100ms 30 -

30 - 120 100ms 100 -

0 - 300 100ms 70 70 70

50 - 650 100ms 100 100 100

10 - 50 100ms 20 -

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 60 80 80

50 - 18000 100ms 50 -

35 - 100 100ms 60 60 60

This parameter is timer T14 It is the period between sendi 10 - 50 100ms 20 -

10-50 100ms 30 30 30

When attempting oriented retry if target cell has not been gain 20 - 60 100ms 20 20 20

It determines the max time of waiting for queue if there is no av 10 - 150 100 ms 50 50 50

Overload contains overloads of CPU MSC signaling point MS 30 - 150 100ms 80 -

50 - 200 100ms 150 -

50 - 200 100ms 80 50 50

20 - 640 100ms 50 -

1-65535 100ms 100 -

10 - 50 100ms 30 30 30

0 - 300 100ms 60 60 60

0 - 300 100ms 60 60 60

0 - 400 100ms 50 320 320

1 - 5 100ms 3 3 3

Connection delay timer This timer is used to wait for connecti 50-70 100ms 50 -

1-65535 100ms 100 -

When using high priority user to access service that is EMLP 0 - 100 (ge) 20 0 0

The selection order of reserved channel and non-reserved chanYesNo Yes Yes

This interface is identified by the user Character string with th - -

Identify BSC geographical longitude (longitude in BSC manage-1800000 - 1800000 180 -

Identify BSC geographical latitude (latitude in BSC managed e -900000 - 900000 90 -

This interface is identified by the user Character string with th - -

External cell number 1 ~ 65535 1 -

GERAN External Cell type Umbrella cell Macro Cel Macro Cell Macro Cell

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

The frequency band of the system GSM900 -

ARFCN of the cell BCCH carrier 1 -

1 ~ 65535 1 -

0 ~ 65535 0 -

0 1 2 3 4 5 6 7 0 -

BCC is one of the composition parts of Base Station ID Code (B0 1 2 3 4 5 6 7 0 -

Determine if the cell supports GPRS YesNo Donrsquot support GPRSWith NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

YesNo No 00 00

0 ~ 31 0 0 0

0 ~ 7 0 0 0

System broadcasts this parameter to MS in SI4 SI6 and SI7 meYesNo No 0 0

YesNo No 0 0

System broadcasts the parameter to MS in SI4 SI6 SI7 and PSI0 ~ 16777215 0 1 1

0 ~ 255 0 12 12

This interface is identified by the user Character string with th - -

2 Timer stop condition T9101 stops when the RLSD message from MSC is received3 Overtime Action If this timer is overtime BSC will send RLSD message to release SCCP connection2 Timer Stop T9103 timer suspends when BSC receives CHANNEL ACTIVATION ACK or CHANNEL ACTIVATION NACK message3 Overtime Action If this timer is overtime BSC will send RF CHANNEL RELEASE message to BTS2 Timer Stop T9104 timer suspends when BSC receives CLEAR COMMAND message from MSC3 Overtime Action If this timer is overtime CLEAR REQUEST message will be resent (four times at the most) 2 Timer Stop T9105 suspends when BSC receives SCCP_CONNECTION_CONFIRMSCCP_CONNECTION_REFUSED message3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MSREQUEST message to MSC

1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start condition The new channel sends the RADIO APPLY message2 Timer stop Channel request succeeds and the new channel receives the RADIO AVAILABLE message or the channel request fails and the RADIO UNAVAILABLE message is received or the RAIO PROCEEDING message is received in queuing1 Timer start RANCS instance sends ESTABLISH IND to RANA instance2 Timer stop RANCS instance receives the CONNECT CONF sent by RANA instance or the CONNECT FAIL when RANA fails to establish the link1 Timer start After RANCS receives the HO COM or ASS COM message of MS and forwards it to RANA2 Timer stop RANCS receives acknowledgement of HO COM or ASS COM message by RANA2 Timer Stop T5 timer suspends when BSC receives CIPHER MODE COMPLETE message from MS3 Overtime Action If this timer is overtime BSC will send BSSAP CIPHER MODE REJECT message to MSC1 Timer start condition The destination channel receives the CHL ACITIVATION ACK message and sends the RADIO AVAILABLE message to the source channel2 Timer stop In MS access the destination channel receives the ASSIGNMENT COM or HANDOVER COM message1 Timer start rmsT8 starts after handover command is sent in Serve state while RANCS instance shall be handovered externally2 Timer stop rmsT8 timer stops if RANCS instance receives HO COMCLEAR CMD (handover success) or UM HO FAIL (handover failed) 1 Timer start T9 starts when RF CHANNEL RELEASE is sent to BTS when RANCS instance is released2 Timer stop T9 stops when RANCS instance receives RF CHANNEL RELEASE ACKNOWLEDGE response from BTS

1 Timer Start T12 timer starts periodically when RANCS receives CONNECT CONF message from RANA Timer decides to perform activity check at peer end Lately it is periodical start2 Timer Stop T12 timer stops when RANCS instance receives RELEASE TYPE message2 Timer stop condition When BSC receives the MODE MODIFY ACKNACK message from BTS and the CHANNEL MODE MODIFY message from MS3 Overtime Action If the timer is overtime the BSC will send BSSAP ASSIGNMENT FAILURE message to MSC

1 Timer start When the target instance decides forced release it will send the PREEMPT APPLY to the released object2 Timer stop The target instance receives the RESOURCE AVAILABLE message from the released object indicating that the resources are available

In cell overload conditions BSC adopts a timer for traffic flow control The mT12 timer in combination with mT11 timer modifies ACCESS CONTROL parameter in the cell BSC notifies the MS to achieve flow control through system informationThe value of timer must be more than that of mT11 timer The two clocks control the cell flow as follows When the network receives the overload message for the first time the system decreases the flow by one level and starts mT11 and mT12 The OVERLOAD message during mT11 period will be ignored If the OVERLOAD message is received between mT11 and mT12 the flow will be decreased by another level and both mT11 and mT12 will be restarted If BSC does not receive OVERLOAD message after mT12 timer stops the flow increases to one more level and the mT12 timer restarts Lower grade and higher grade represent different proportion to reject serviceIn micro-micro handover control a delay time value is required (the timer value) Timer Start relevant timer starts instantly when a call enters a micro cellTimer Stop relevant timer stops when it reaches the set value Existing call can use neighboring micro cell in the same layer only when the timer stops In this way it could prevent fast moving mobiles staying in the micro cell layerThe parameter Tbsic defines a period which is calculated from call establishment or handover completion (inter-cell or intra-cell) TCI evaluation is considered as unreliable during this period thus handover to a special TRX is not allowed During this period MS can decode BSIC that interferes with neighboring cells before handover procedure startsThis parameter is only valid in concentric circle case2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED2 Timer Stop The timer stops when BSC receives ESTABLISH INDICATION message3 Overtime Action If the timer is overtime the BSC will send CHANNEL RELEASE message to BTS2 Timer Stop The timer suspends when BSC receives HANDOVER COMPLETE message on a new channel or HANDOVER FAILURE message on an old channel from MS3 Overtime Action If the timer is overtime the BSC will send a CLEAR REQUEST message to MSC and the new channel is released2 Timer Stop The timer stops when BSC receives RIL3_RR ASSIGNMENT COMPLETE message or RIL3_RR ASSIGNMENT FAILURE message3 Overtime Action If this time is overtime in the case of assignment the former and new channel will be released in the case of cell internal handover the BSC will send a CLEAR REQUEST message to the MSC2 Timer Stop The timer stops when BSC receives RELEASE INDICATION message from BTS (when BTS receives DISC frame from MS) 3 Overtime Action If this timer is overtime BSC will send CHANNEL RELEASE message to MS1 Timer start rmsT3111 timer starts when BSC receives RELEASE INDICATION message2 Overtime Action If rmsT3111 timer is overtime the BSC will send RF CHANNEL RELEASE message to BTS

2 Timer stop it stops when BSC receives HANDOVER COMMAND from MSC3 Timeout action configure penalty for UTRAN target cell carried in HANDOVER REQUIRED

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850When Frequency Band is DCS1800 its value range is 512~885When Frequency Band is GSM850 its value range is 128~251For internal use assign the position number at

local cell on handoverFor internal use assign the number of local cellon handoverActually NCC occupies three bits NCC is oneof the network identification parameters

during reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCH

broadcasts to MS in PSI3 message It indicatesthe cell reselection status

it will page the MS in that routing area RAIcannot span more than one SGSN

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 16: NPT Template ZTE 2G_Parameter_10-Oct-2012

Serial number of UTRAN external cell 1 ~ 65535 1 0 0

The type of this UTRAN cell FDD TDD FDD 0 0

MCC consists of three digits of decimal number It is used to uni0 - 999 460 -

MNC consists of three digits of decimal number It uniquely ide 0 -

UTRAN cell Frequency 0 0

1 ~ 65535 1 -

Each RNC has a unique number in the UTRAN network of PLMN 0 ~ 4095 0 0 0

It identifies the UTRAN adjacent cell 0 ~ 65535 0 0 0

0 0 0

YesNo No 0 0

475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No Yes N Y Y Y Y N

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

The code has 8 bits The code has 8 bits Bit 8 122 kbps Bit 7 Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No Yes

The threshold of changing AMR mode includes seven factors 22252934 6 9 13 18 24 31 396 9 13 18 24 31 39

The hysteresis of changing AMR mode includes seven factors [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 6

Use the coding mode specified by Startmode Startmode codec Initial codec modeStartmode codec Startmode codec

1 1 1

YesNo No FALSE

1 - 255 s 2 2 2

When load degree in RACH channel for BTS exceeds this thres0-100 (ge) 80 80 80

When load degree in PCH channel for BTS exceeds this thresh0-100 (ge) 80 80 80

Average bursts count surveyed by RACH specifies the number of0-100 burst 60 60 60

RACH Receiving signal level threshold for busy burst is the thr 0-63 - (110-Ths) dbm 63 63 63

Macro Cell -

1 - 65535 1 -

0 - 65535 0 -

0 1 2 3 4 5 6 7 0 -

0 1 2 3 4 5 6 7 0 -

The frequency band types for GSM operation GSM900 -

The radio frequency set None 0 0

CCCH uses one physical channel not combined with SDCCH

2 - 65535 According to planning -

according to the plannin According to planning -

0 - 65535 According to planning -

2 - 65535 According to planning -

according to the plannin According to planning -

0-7 2 0 0

It represents the maximum TA supported by extended cell 63 63 63

16bits YesNo[No No No No No No No No No No No No No No No No] No No No No No No No No No No No No No No No No

YesNo No No

YesNo No No

0 - 63 0 lt -110 dBm 10 5 25

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

5 3 3

It represents the maximum TA granted to be accessed into the c 63 63 63

0-255 s 10 15 15

0 1 times 1 2 times 2 2 2

0 1 times 1 2 times 2 2 2

0-31 GSM 5 DCS1800 0 GSM 5 DCS1800 0

0 12 1 15 2 20 3 14 14 14

When MNC3Digits is selected as 2 digits MNC value will be 0-99 When MNC3Digits is selected as 3 digits MNC value will be 0-999When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) value range is 9262 ~ 9638 9662 ~ 9938 10062 ~ 10113When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) value range is 9254 ~ 9646 9654 ~ 9946 10054 ~ 10121

When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 0 (384 Mcps) default value is 9262When UTRAN Cell Type (CellTypeUTRAN) is TDD and UTRAN adjacent cell bandwidth (BandWidthUTRAN) is 1 (128 Mcps) default value is 9254For internal use assign the position number at

local cell on handover

and there are 8 scrabbling codes in each setTDD The parameters describing adjacent cell

When UTRAN Cell Type (CellTypeUTRAN) is FDD this parameter represents FDD interference code value range is 0 ~ 511When UTRAN Cell Type (CellTypeUTRAN) is TDD this parameter represents TDD cell parameter value range is 0 ~ 127It indicates if UTRAN adjacent cell uses diversity

transmissionThe code has 8 bits Bit 6- Bit 8 reserved Bit 5 740 kbps Bit 4 670 kbps Bit 2 515 kbps Bit 1 475 kbpsYesrsquo represents 1rsquo and Norsquo represents 0rsquo Four coding modes could be set at the most Default code is 00011110 (that is 30)

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo

(FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

3 Select the coding mode with the third lowest bit rate if there is more than two coding modes4 Select the coding mode with the fourth lowest bit rate if there are more than three coding modes

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes No Enable noise suppression

Yes Disable noise suppression According to the GSM standard BTS sends periodical message CCCH LOAD INDICATION to BSC as long as CCCH (RACH+PCH+AGCH) channel exceeds the threshold value set in OampM until the CCCH is not over the threshold value any moreCCCH load indication period parameter defines the period of sending CCCH LOAD INDICATION message This parameter is one of the BTS configuration parameters

If you need configure S8001 cell micro-microcell shall be selected for cell type

Umbrella cell Macro Cell Micro Cell Micro-microCell Extended CellLAC comes under LAI (LAI = MCC + MNC + LAC)

One location area contains multiple cellsuniquely the network operators allocate a uniquecode for each cell in a location areaActually NCC occupies three bits NCC is oneof the network identification parametersbe equal to the cell BCC BCC occupies three bits BCCis one of the network identification parameters (FuncExt) is PCS1900 it value range is GSM900

EXT900 PCS1900 GSM850 BTS the system automatically fills it in thisboxThis parameter is broadcasted to all MSs in the cell

by message RIL3_RR SYSTEM INFORMATION TYPE3channels not combined with SDCCH CCCH uses fourphysical channels not combined with SDCCH

CCCH uses one physical channel not combined withSDCCHpeer entity very effectively One NSE carries

only one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationRelevant configuration at GB interface this parameter is optionalpeer entity very effectively One NSE carriesonly one signaling BVC (BVCI=0) It corresponds with the board position in physicalconfigurationFrame It is recommended that this value of the cellsin the same local area is identical When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 2192 Parameter forbids cell access when Cn is 1 which indicates that MS with access class of N is forbidden (N = 0 1 9 11 15) 3 C10 is always 0PLMN carriers can determine if to allow MS to access a specific cell (for example the cell in test or the cell for absorbing traffic only)Network broadcasts Cell bar access information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 messagesThis function can be implemented by configuring CellBarQualify CellBarQualify is used to limit cell priority in special case Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 and TYPE4 messages It is one of the cell selection parameters The validity of this parameter depends upon cell reselection parameter indicationSelect No for Cell Bar Access and Norsquo for Cell bar qualify that is the cell priority is defined as Normalrsquo MS preferably enter some types of cells Set the priority of this cell type as Normalrsquo while the priorities of other cells to Lowrsquo In some cases such as micro cellular application and dual-frequency networking this setting will not affect the cell reselectionWith this measure for traffic balance it is suggested that the level value should not exceed -90dBmDefine the parameter value to 10 (that is from -101 dBm - -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem

BCCH+SDCCH4 and BCCH+SDCCH4+CBCHWhen CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotMS use this parameter to find out its home paging group so as to monitor corresponding paging sub-channel Network broadcasts the parameter information to all MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 message Number of multiframes of the PCH isone of the system control parameters When Cell Type (CellType) is non-extended cell value range is 0 - 63 default value is 63

When Cell Type (CellType) is extended cell value range is 0 - 219 default value is 219This parameter is also one of the system control parameters and is sent to MS in the IMMEDIATE ASSIGNMENT REJECT messageFollowing are the suggested values 10 s - 15 s for normal traffic area 15 s - 25 s for dense traffic area3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestion3 Define value as 1 (maximum number of resending times is 2) for the micro cell4 Define value as 0 (maximum number of resending times is 1) for the micro cell with heavy traffic and the cell with congestionThe principle of setting this parameter is as follows Under the precondition that the MS at the cell boundary is guaranteed with a certain access success rate the MS access level should be reduced as much as possible Generally it is recommended to set this parameter as 5 (for GSM900MS) and 0 (for GSM1800MS)In practice after setting this parameter perform dialing test at the cell edge increase or decrease the value of this parameter according to the MS access success rate and access time tested with different parameter setupParameter used at the MS side It belongs to the PRACH control parameters and it is broadcast to the MS in the PSI1 message In establishment of a connection MS usually will send the channel request message in the PRACH channel to the networkAs PRACH is an ALOHA channel to improve MS access success rate the network allows MS to send multiple channel request messages before receiving packet assignment message If MS does not receive any response for the previous channel request message MS resends channel request message after waiting for a random period Network uses S parameter to determine random waiting time

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 17: NPT Template ZTE 2G_Parameter_10-Oct-2012

YesNo Yes Yes

0 MS could use DTX 1 1 1

If this cell supports dynamic HR YesNo No Yes

YesNo No No

It indicates use cell dynamic HR parameter YesNo No Yes

0~3 3 3 3

1~67 10ms 28 28 28

0~31 1 1 1

1~32 10ms 10 5 5

1~31 2 4 4

0~4 SACCH multiframe 3 0 0

0~31 s 2 5 5

1~3 According to planning 2 2

YesNo Yes Yes

TA of the destination cell is unknown YesNo Yes Yes

MS is able to calculate TA of the destination cell YesNo No No

This parameter determines the TA available for BASK YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

YesNo Yes yes

YesNo No No

This parameter determines if to allow concentric handover YesNo No No

YesNo No No

YesNo No No

YesNo No No

YesNo No Yes

This parameter determines if to allow rapid handover YesNo Yes No

YesNo No Yes

YesNo GSM Yes DCS No No

This parameter determines if to allow internal handover based YesNo No No

YesNo No No

YesNo Yes Yes

YesNo Yes No

YesNo Yes Yes

YesNo Yes Yes

This parameter determines if to allow dwonlink rapid handover YesNo No No

0~63dB 15 15 15

1~255 MR reporting period (BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH7 12 12

1~7 3 1 1

5~35 20 20 20

YesNo No No

According to GSM specification TRX sends periodic OVERLOAD 1 - 255 s 2 2 2

0 1 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

T200 is the timer used on various control channels in LAPDm pr1-7 5ms 1 1 1

YesNo No No

Cell Support Encryption Mode is the encryption mode suppoYesNo bit1 use cipher mode or not bit2 A51 support or not bit3 A52 support or not bit4 A53 support or not bit5 A54 support or not bit6 A55support or not bit7 A56 support or not bit8 A57 support or not [Yes No No No No No No No] [Yes Yes Yes No No No No No]

This parameter decides maximum number of candidate cells Jan 16th 6 6 6

0-3 2db 0 0 0

T200 is the timer used on various control channels in LAPDm pr1-7 10ms 2 2 2

YesNo No No

Yes enable No disable1048707 MS should not use DTXIf both the BTS equipment and TRAU support the DTX mode set the parameter as 1 (employ DTX) Otherwise set it as 2 (not employ DTX)

No half rate service access not supported by this cell Yes half rate service access supported by this cell

MS reports the remaining adjacent cellsregardless of which frequency bands they are inRIL3_RR PHYSICAL INFORMATION messagewill be redeliveredwill be the sum of the reported values dividedby (NCellWindow ndash the count of 0s)RIL3_RR PHYSICAL INFORMATION messagewill be redeliveredof sample values) used to calculate average valueof signal intensity for adjacent cellsperiod is 4 SACCH multi-framesOther values ReservedBy default it can be set to 5 for macro cell But formicro cell this parameter only can be set to 0Note In general micro cell adopts option 1and macro cell adopts option 2TA of the destination cell is same as that of the sourcecell

This parameter determines if allow inter-cell handoverattempt due to uplink interferenceThis parameter determines if to allow inter-cell handoverattempt due to downlink interferenceThis parameter determines if to allow handover dueto distanceThis parameter determines if to allow standard PBGThandoverThis parameter determines if to allow automatichandover based on trafficThis parameter determines if to allow automaticdirection based on traffic

This parameter determines if to allow intra-cell handoverin super TRX channel due to downlink interferenceThis parameter determines if to allow intra-cell handoverin super TRX channel due to uplink interferenceThis parameter determines if to allow adjacent cellshandover in super TRX channel due to PBGTThis parameter determines if to allow dynamic adjustmentof handover priority

This parameter determines if to allow Macro-Microdelay handoverThis parameter determines if to allow Micro-Micro delayhandover

This parameter determines if to allow forced transferhandoverThis parameter describes if uplink quality handoveris permittedThis parameter describes if uplink level handover ispermittedThis parameter describes if downlink qualityhandover is permittedThis parameter describes if downlink level handoveris permitted

This parameter is used to perform an offset on thedownlink level of this cell in the penalty periodBSC will not occur This parameter determines penaltydurationpriorities is within the tolerable difference MSis handover to the second cellPHYSICAL INFORMATION message This parameteris one of the BTS configuration parametersCBC service is an important service provided by mobile communication system mainly used to distribute information to the mobile subscribers within certain geographical location area The difference from P2P sms service contains receiver for P2P sms is specific mobile subscriber but receiver for CBC is all mobile subscribers within certain area including external subscribers roaming in this areaThis parameter identifies if this cell supports the function of cell broadcasting short message

0 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 0 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 11 BA Show (BcchBaInd) value on BCCH (System message 2 2bis 2ter) is 1 BA Show (BcchBaInd) value on SACCH (System message 5 5bis 5ter) is 0

This parameter decides if to add offset value for Control channel MAX power level parameter while sending access request message on RACH for Class 3 MS of GSM1800 The necessity of offset value depends on Power offset indication that is this parameter decides if Power offset indication is valid This parameter also affects MS calculating cell selection and cell reselection standards C1 and C2Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

According to the GSM specification for Class 3 MS of GSM 1800 the transmission power for sending access request message on RACH is to the value of Control channel MAX power level plus a modified value Power offset specifies the modified value It determines if this parameter is validThis parameter also affects the calculation of cell selection standard C1 and cell reselection standard C2 Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 4 7 and 8 messages

Defined according to user requirementIf user selects subcell used the system may automatically add power control 2 node under cell node used to control cell power If the user selects dont use subcell power control 2 node may be automatically deleted

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 18: NPT Template ZTE 2G_Parameter_10-Oct-2012

0

0-255 360s 10 10 10

Add or Delete NCC within the value range 8 bits represent NCC 0- [0 1 2 3 4 5 6 7] [0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

YesNo No No

YesNo 1 Yes

YesNo Yes No

YesNo Yes Yes

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

BSC can allocate the suitable TCH channel when an MS attempts YesNo Yes No

Set the frequency band of subCell GSM900 GSM900

0-255 360s 40 40 40

Others BCCH Norm BCCH Ext BCCH Norm BCCH Norm

Others No package access Allow priority 1 Allow priority 1-2 Allow priority 1-3 Allow priority 1-4 Allow priorityAllow priority Allow priority

Others YesNo Yes Yes

Others 4 access bursts RLCMAC control blockRLCMAC control block RLCMAC control block

PBCCH related YesNo No No

PBCCH related YesNo 9 types (PSI2 PSI3 PSI3BIS PSI4 PSI5 PSI13 PSI3ter PSI8 PSI3quater) Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes

PBCCH related 0 - 255 s 10 10 10

PBCCH related 0 - 100 20 20 20

PBCCH related 63 63 63

5 10 15 20 30 60 120 300 s 5 5 5

YesNo Yes Yes

0 2 4 6 8 10 12 14 dB 0 0 0

0 2 4 6 8 10 12 14 dB 8 8 8

YesNo Yes Yes

YesNo Yes Yes

12 12 12

PBCCH related 4bits 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16[0 0 0 0] 0 0 0 0 0 0 0 0

PBCCH related 0 6 12 18 24 30 36 unlimited dB 6 6 6

PBCCH related YesNo Yes No

PBCCH related 8 bits 11 bits 8 bits 8 bits 8 bits

PBCCH related 0 - 100 60 60 60

PBCCH related 0 - 100 50 50 50

1 2 4 7 4 4 4 4 4 4 4 4 4 4 4 4

Determine whether to do access control YesNo No No

YesNo No No

YesNo Yes No

0~7 10db 0 0 0

0~31 20s 0 0 0

0~7 2db 4 7 7

YesNo No Yes

This parameter decides if to allow queuing in assignment proces YesNo No Yes

This parameter decides if queuing can be performed during a ha YesNo No No

It decides if forced disconnection is allowed during the assignm YesNo No No

It decides if forced disconnection is allowed during the handove YesNo No No

This parameter defines if eMLPPThs is used If yes you shall se YesNo Yes No

This parameter indicates if the low priority subscribers can be f YesNo No No

This parameter indicates if the low priority subscribers can be f YesNo No No

YesNo Yes No

YesNo Yes No

0~100 100 0 0

1-31 SACCH multiframe 31 31 31

0 ~ 5 [0 10 15 20 25 63][0 10 15 20 25 63]

1 use uplink SACCH error criteria 2 use uplink RxlevampRxQual criteria1 1 1

0 - 63 0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm10 10 10

EGPRS2-A supported relevant sub-page may occurin the interfaceNetwork controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parametersThe setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

No Do not allow Emergency call for MSs whose access level is 0-9 For the MSs whose access level is 11-15 if its corresponding access control bit is T the emergency call is also not allowedYes Allow Emergency call for all MSs GSM specifications define emergency call phone number as 112 which is different from Chinese emergency call but 112 is generally connected to the automatic voice service to inform the users about the number of various special services Hence EC shall be set as Norsquo that is to allow the emergency callThis parameter is included in Control channel informationrsquo and is used for RIL3_RR SYSTEM INFORMATION TYPE3 messageThis parameter of each cell in the same location area shall be identicalFor the call drop caused by radio link failure resulted from burst interference or high building MS could originate call re-establishment process to restore the call However the network determines if to allow reestablishment by enabling Call re-establishment allowedNetwork broadcasts the parameter information to MS in the cell through RIL3_RR SYSTEM INFORMATION TYPE1 2 2bis 3 and 4 message Call re-establishment allowed is one of the network function parametersEarly category classmark sending control determines if the network supports ECSC function Network broadcasts the parameter information to MSs in the cell through RIL3_RR SYSTEM INFORMATION TYPE3 messageIf there is a cell in another frequency band in the adjacent cell for handover or the current cell itself is extended GSM cell and the function of early category classmark sending control is enabled set ECSC as Yesrsquo otherwise set as Norsquo

When the value of DCS1800PCS1900 supported (FuncExt) is DCS1800 it value range is GSM900 EXT900 DCS1800 GSM850 When the value of DCS1800PCS1900 supported (FuncExt) is PCS1900 it value range is GSM900 EXT900 PCS1900 GSM850Network controls the location time interval and depends upon T3212 timer Network broadcasts to all MSs in the cell by RIL3_RR SYSTEM INFORMATION TYPE3 message T3212 timer is one of the system control parameters

The setting of this parameter will affect the overall service performance and utilization rate of radio resources of the network For the area with higher traffic the period could be bigger (for example 16 or 20 hours even 25 hours) for the area with ordinary traffic the value of T3212 could be smaller (for example 3 or 6 hours) for the area with extreme overload traffic it is recommended to set T3212 as 0

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm) during reselection on idle status which only

functions while configuring PBCCHT_RESEL_1 Parameter used at the MS side Inform MS onduring reselection on idle status which onlyfunctions while configuring PBCCHC31_HYST_1 Parameter used at the MS side It is informed toThis parameter indicates the parameters usedduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection on idle status which onlyfunctions while configuring PBCCHduring reselection in transmission stateC32_QUAL_1 Parameter used at the MS side It is informedduring reselection on idle status which onlyfunctions while configuring PBCCH

0 - 63 (0 lt -110 dBm 1 -110 dBm - -109 dBm 2 -109 dBm - -108 dBm 62 -49 dBm - -48 dBm 63 gt -48 dBm)

array element corresponds to maximum numberof attempts allowed for radio priority 1

lsquoYesrsquo when the system adopts the system messages7 and 8 and the cell reselection uses C2Enable this parameter if related cell adopts C2 asthe cell reselection standard Otherwise disable itvalidity of this parameter depends upon Cellreselection parameter indicationvalidity of this parameter depends upon Cellreselection parameter indicationexpressway the CRH parameter shall be set as1 ~ 3 (that is 2dB ~ 6dB for the CRH level)This parameter indicates if to use directed retry process Network assigns corresponding service channel for MS in an adjacent cell if there is no service channel available in serving cellDirected retry indication defines a special handover process that can reduce the call drop ratio Directed retry falls into intra-BSC directed retry and inter-BSC directed retry The former one does not need the participation of MSC while the latter one does

cell can dynamically enable dynamically configuredBCCH functionthe cell can dynamically enable dynamic configuredSDCCH functionMinimum resource threshold allowed by the cellwhich is used to calculate dynamic cell priorityBTS needs to measure interference on the unallocated traffic channels BTS calculates the average of recent interference values on periodic basis and converts it into corresponding interference band informationBTS then transfers to BSC in the RF RESOURCE INDICATION message to consider it as a factor in channel allocation strategy This parameter is one of the BTS configuration parametersThe interface boundaries are used to help the conversion of the interference level (average) value into corresponding interference band information Altogether six boundaries determine five interference bands In fact it is unnecessary to set interference boundary 0 and interference boundary 5 One of them represents infinity and the other represents negative infinity This parameter describing the remaining four boundaries is one of the BTS configuration parametersGenerally -85 dBm - -115 dBm is used for interference boundaries 1 - 4

(0-5) 0 -110 dBm 1 -109 dBm 63 -47 dBm1 Uplink SACCH Error Rate Based (in order to ensure the same judgment standard in the uplink and downlink directions)

2 RXLEVRXQUAL Measurement BasedThe radio link is considered as failed if BTS detects one of the following conditions The uplink receiving level is smaller than a certain threshold The uplink receiving quality is greater than a certain threshold This only applies if the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure Receiving level threshold specifies the threshold of receiving levelThis parameter is invalid if uplink SACCH error rate is used as the standard to judge connection failure (Radio link failure criterion is 1) Receiving level threshold is one of the configuration parameters of BTS

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 19: NPT Template ZTE 2G_Parameter_10-Oct-2012

0 corresponding BER range lt02 1 02 - 04 2 04 - 08 6 64 - 128 7 gt 1286 6 6

Period to detect radio link failure at network side (in the unit1-63 SACCH multiframe period 63 63 63

ARFCN of the cell BCCH carrier According to planning -

0 - 7 According to planning 0 0

Resource Allocation related 0 - 255 (ge) 2 2 2

PS Cell reselection related YesNo No

PS Cell reselection related YesNo Yes

PS Cell reselection related YesNo No No

TBF establishment and release YesNo Yes Yes

TBF establishment and release 0 - 4000 ms 1000 1000 1000

500 - 4000 ms 2000 2000 2000

TBF establishment and release 0 - 3000 ms 1500 1500 1500

Data transmission related 10 8 8

Data transmission related 10 10 10

Data transmission related 10 8 8

Data transmission related 8 8 8

Codec mode adjustment 400 - 2000 ms 800 800 800

PBCCH related 0 - 16 s 10 10 10

PBCCH related 4 4 4

Resource Allocation related 0 0 0

TBF establishment and release 05 - 40 05s 40 3 3

TBF establishment and release 500 1000 1500 0 80 120 160 200 ms 500 1500 1500

TBF establishment and release 0 1 2 4 8 16 32 64 s 2 2 2

TBF establishment and release 0 - 15 block num 15 12 12

TBF establishment and release 4 8 12 16 20 24 28 32 4 4 4

TBF establishment and release 4 8 12 16 20 24 28 32 8 8 8

TBF establishment and release 4 8 12 16 20 24 28 32 [CS2 CS2] 32 32

Codec mode adjustment YesNo Yes 1 1

PS Cell reselection related 048 096 192 384 768 1536 3072 6144 s6144 6144 6144

048 096 192 384 768 1536 3072 6144 s384 384 384

PS Cell reselection related YesNo Yes No

PS Cell reselection related NC0 NC1 NC2 NC0 NC0

PS Cell reselection related No non-DRX mode 024 048 072 096 120 144 192 s048 048 048

PS Cell reselection related EM0 EM1 EM0 EM0

PS Cell reselection related Type1 Type2 Type3 Type1 Type1

PS Cell reselection related 60 120 240 480 960 1920 3840 7680 s1920 1920 1920

PS power control 0 0 0

PS power control 0 0 0

PS power control YesNo Yes No

PS power control BCCH PDCH BCCH BCCH

PS power control 0 0 0

0 - 15 0 0 0

0 ~ 31 GSM 5 DCS 0 5 5

PBCCH related 0 4 8 16 24 32 48 64 0 0 0

PBCCH related 0 - 10 0 5 5

PBCCH related 0 1 2 3 0 3 3

PBCCH related 0 - 15 2 2 2

PBCCH related 2 3 4 5 6 7 8 9 10 12 14 16 20 25 32 504 14 14

PBCCH related 12 15 20 30 41 55 76 109 163 217 s 20 55 55

DTM related YesNo No

DTM related 0 - 7 3 3 3

TBF establishment and release YesNo No

Data transmission related YesNo No No

Data transmission related YesNo No Yes

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 154 10 10

Codec mode adjustment 0 1 2 3 4 5 6 7 8 9 10 4 10 10

Codec mode adjustment0 MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will not reported (which means TBFMEAN_BEP and CV_BEP of TBF will be reported) 1 only I_LEVEL_TN (0-7) will be reported 2 only MEAN_BEP_TNx (0-7) will be reported 3 both MEAN_BEP_TNx (0-7) and I_LEVEL_TN (0-7) will be reported2 0 0

If the measured value of RXLEVRXQUAL is used as the standard to judge a connection failure the radio link will be considered as failed when BTS detects that the uplink receiving level is smaller than a certain threshold or the uplink receiving quality is greater than a certain threshold Receiving quality threshold specifies the receiving threshold qualityIf the uplink SACCH error rate is used as the standard to judge a connection failure this parameter is invalid This parameter is one of the configuration parameters of BTS

When Frequency Band is EXT900 its value range is 0~124 975~1023When Frequency Band is PCS1900 its value range is 512~810When Frequency Band is DCS1800 its value range is 512~885

it initiates the Routing Area Updatingrsquo processsimilar as when it spans two different routing areas

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes Need not to enable NACC choose No

TBF is released this timer starts access to delaystate to wait for new downlink LLC frame Release

0 - 15 s (0 PSI1 repeat period is 1 multiframe 1 PSI1 repeat period is 2 multiframes 15 PSI1 repeat period is 16 multiframes) 0 - 1

(0 uplink block allocation granularity is 1 1 uplink block allocation granularity is 4)

of MS reporting cell reselection survey in packettransmission mode When Network control order is

0 - 31(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes The filter period is 2 (252) 6 multiframes) s0 - 31

(0 The filter period is 2 (02) 6 multiframes 1 The filter period is 2 (12) 6 multiframes 25 The filter period is 2 (252) 6 multiframes 26-31 Reserved) s

0 - 10 (Assuming the parameter of MS transmission power control is (α) 0 α = 00 1 α = 01 10 α = 10 11-15 α = 10) and it is broadcast to the MS in the PSI1 PSI13

and SI13 messages This parameter is a filter constantselection and reselection by MS involved incalculation of C1 and C2 valuesRefer to appendix C for the maximum power before MS receives the power control information

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 20: NPT Template ZTE 2G_Parameter_10-Oct-2012

0-8 (MCS1-MCS9) [MCS2 MCS5 MCS6 MCS6] 2 2 8 8 2 2 8 8

Codec mode adjustment YesNo Yes 1 1

TRX number in the cell According to GSM specificationsone cel 1 ~ 60 1 -

Common TRX Expand TRXAccording to planning Common TRX

First SubCell -

1 ~ 5 According to planning

YesNo No -

Max Output Power Max output power - 0~6 dB

According to planning -

According to cell channel planning -

0 1 2 3 4 5 6 7 According to planning -

0 ~ 63 According to planning -

According to planning -

2 2 2

2 2 2

2 2 2

2 2 2

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (lt) 22 22-30 22-30

3 2 2

4 3 3

0 - 63 (0 lt-110dBm 1 -110dBm--109dBm 62 -49dBm--48dBm 63 gt-48dBm) (gt) 30 30-36 30-36

2 2 2

3 3 3

0-7 (gt) 2 1 1

YesNo Yes No

3 2 2

4 2 2

0-7 (gt) 1 1 1

2 2 2

2 2 2

YesNo Yes Yes

YesNo No Yes

24 db 2 2 2

5 5 5

5 5 5

16 16 16

10 11 11

PS power control 1 1 1

PS power control No control Open-loop control Close-loop control Control based on qualityAccording to planning No control

PS power control A B A A

PS power control 0 - 31 dB 0 0 0

PS power control 0 0 0

0~63 35 -

0~2 1 1 1

0~20 15 15 15

0~2 1 1 1

0~20 10 10 10

0~255MR reporting period(BTS--gtBSC) if Preprocess=0 then 480ms for TCH 470ms for SDCCH16 16 16

0~10 3 3 3

1~31 3 3 3

1~31 2 2 2

0~63 40 40 40

1~31 3 3 3

1~31 2 2 2

1~31 3 -

1~31 2 -

Concentric handover Handover based on path loss and TANo -

INIT coding scheme GPRS downlink INIT codingscheme GPRS uplink MAX coding scheme GPRSdownlink MAX coding scheme and the default coding

cell if the sub-cell is supported There is nospecial requirements on sub-cell 2subcell contains this TRX If not set this field to firstsub cell You cannot modify it after successful creation

When Subcell Used (SubCellUsed) is No value range is the first subcellWhen Subcell Used (SubCellUsed) is Yes value range is the first and the second subcellSelect channels on carriers with high priority

when allocating channelsBCCH Trx 1

Non-BCCH TRX without fixed PDCH 3Non-BCCH TRX with fixed PDCH 4

One and only one BCCH carrier frequency must beconfigured in a cellthe TRX The dynamic power control is implementedbased on the maximum transmission power Pn

output power - 8 dB Max output power - 10 dB Maxoutput power - 12 dB Max output power + 15 dBNote S8001 only has a frequency and doesnt

support frequency-hoppingvalue range is No base band freq-hopping

and RFID freq-hopping1048707 If BCCH Carrier (BcchMark) is Yes the valueBCCH+SDCCH4 and BCCH+SDCCH4+CBCH

When CCCH Channel (CcchConf) is configured

1048707 BCCH+SDCCH41048707 BCCH+CCCH

1048707 BCCH+SDCCH4+CBCHreceiving side For the timeslot where BCCH is thisparameter must be equal to BCC of the cellcorresponding to the timeslot has no frequencyhopping MAIO of the timeslot is invalidYES Representing dynamic timeslot NO Representingfixedly configured timeslotWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultWeight for the second type of measurementdata is set to 1 by defaultthreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengththreshold value increase MS (uplink) transmissionpower to improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue reduce MS (uplink) transmission powerto improve the uplink signal strengthvalue increase MS (uplink) transmission powerto improve the uplink signal qualityfrom causing error control (the forward andbackward cells are in the same BSC)value increase MS (uplink) transmission powerto improve the uplink signal qualityvalue increase MS (uplink) transmission powerto improve the uplink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityvalue reduce BTS (downlink) transmission powerto improve the downlink signal qualityuplink power control in the cell This power control isonly effective to TCHFThis parameter determines if to enable or disable BTSdownlink power control in the cellcontrol variation It applies to both uplink and downlinkdirectionspower available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power available for MS in the cell BSC alsouses it to calculate PBGT value

MAX power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31power (that is lower limit of power control) that can be used by MS in the cell

MIN power level of MS can be divided into fourkinds FR HR AMR FR and AMR HR

Value range is 0 - 31lower limit of power control) available for BTS in thecell

The maximum power level of BTS is Pn1048707 0 Pn 0 - 63

(0 -110 dBm 1 -109 dBm 63 -47 dBm)

0 - 15 (0 P0=0 dB 1 P0=2 dB 15 P0=30 dB) shall be more than the threshold for uplink

power control (decrease)then the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationthen the database select proper channelsbased on this informationtell original occupation condition of databasethen the database select proper channelsbased on this informationnot to attempt handover within a certain periodPerform penalty in intra-cell penalty modenot to attempt handover within a certain periodPerform penalty in intra-cell penalty mode

be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)be less than (or equal to) the threshold foruplink power control (decrease)related N value and parameter ldquoGoodCiPrdquodefines the related P valuerelated N value and parameter ldquoGoodCiPrdquodefines the related P valuesubcell handover algorithm Concentric HandoverHandover based on path loss and TA

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 21: NPT Template ZTE 2G_Parameter_10-Oct-2012

0~50dB 0 0 0

0~150dB 126 0 0

0~150dB 120 0 0

0~63 1 0 0

0~63 0 0 0

1~10 4 0 0

1~10 3 0 0

1~31 3 -

1~31 2 -

1~31 4 4 4

1~31 4 4 4

Common cell 0 ~ 63 Extended cell 0 ~ 219 (lt)63 63 63

0~20db 3 0 0

0undefined 1same layer 2upper layer 3lower layer1 According to actual situations

0~100 70 80 80

0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) (ge)24For the same frequency band 20 for different frequency band it should be smaller than PBGT

0~150 110 110 110

0~63 5 5 5

1~31 4 3 3

1~31 3 2 2

This parameter defines a protection period to prevent immediate1 - 255 (period of measurement or pretreatment measurement report) 7 -

2010-1-31 6 -

2010-1-31 6 -

This parameter indicates UTRAN handover priority control M According to MSC default handover to UTRAN first 0

This parameter determines if allow directed retry to UTRAN cell YesNo No -

This parameter indicates if intersystem handover within BSC i YesNo No -

BSC reserves at least HoEcNo_N_FDD RSCP average values for 25 -

BSC reserves at least HoRSCP_N_FDD RSCP average values for 35 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

This parameter defines a threshold When average receiving leve 7 -

This parameter is used to search and measure the cell data w 0 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 3 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 3 -

When at least HoRSCP_P_FDD out of the latest HoRSCP_N_F 1 - 20 1 - 20 4 -

When at least HoEcNo_P_FDD out of HoEcNo_N_FDD average v 1 - 20 1 - 20 4 -

This parameter defines a threshold value for handover from 1 - 20 1 - 20 4 -

It indicates channel location of si2quater broadcast 0 -

It indicates enhanced measurement report for UE or measurem 1 -

This parameter indicates the measurement threshold of UE perfo 7 7 7

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates if MS uses RSCP or EcNo to report measurement 0 RSCP 1 EcNo 1 -

This parameter indicates the minimum value of EcNo of the UTRAN0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12dB3 7 7

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB8 0 0

It indicates if requiring UE to send UTRAN classmark change YesNo No -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

0 1 2 3 0 -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

When cell is reselected to 3G TDD adjacent cell its RSCP shall 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 158 5 (-12dB) 5 (-12dB)

This parameter indicates the maximum number of UTRANTDD adjac 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

0 0 dB 1 10 dB 2 Automatic determined by UE0 -

This parameter indicates that UE uses PACKET MEAS 0 1 0 -

This parameter defines the number of adjacent cells with the sam 0 1 2 3 2 -

It indicates frequency of measurement reports in adjacent cell re 0 Normal 1 Low 0 -

This parameter indicates the maximum number of UTRANFDD adjac 0 1 2 3 2 -

It indicates the value to compensate power in thesecond cell in dual band cellthreshold parameters while subcell 2 do path losshandover decision for subcell 1of the first subcell is available use RR_GETRADIOCHANNELinterface of DBS to apply channelthreshold parameters while subcell 2 does TA handoverdecision for subcell 1threshold parameters while subcell 1 does TA handoverdecision for subcell 2handover parameter) of the SubcellN values satisfythe condition then perform handoverhandover parameter) of the SubcellN values satisfythe condition then perform handoverparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueparameter BadCiN defines the related N value andparameter BadCiP defines the related P valueof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSof sample values) used to calculate average value ofdistance (timing advance) between MS and BTSperform handover The handover is due to MSbeing out of the cell service rangedifference MS is handover to the second cellThis parameter indicates this allowable difference3 LOWER Adjacent cell is lower layer of thiscell (when this cell is macro-cell)idle channels) then it indicates the cell is too busyand traffic handover is triggered for the cellthreshold in reverse direction Otherwise it may resultin toggle handoverthreshold on force handover1048707 Destination cell is forced transfer cellthreshold on force handover Destination cell is forced transfer cellthreshold on force handoverDestination cell is forced transfer cellthreshold on force handover1048707 Destination cell is forced transfer cell

In GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculationIn GSM system BSC uses the power level measurement data to manage and control handover decisions BSC uses average values instead of original values of measurement data for handover decisions It helps prevent negative impact on network performance caused by abrupt changes in measurement data Average on measurement value in UTRAN adjacent cell also shall be requiredHoWindowUTRAN of EcNo or RSCP average is the window size to calculate EcNo or RSCP average in adjacent UTRAN cell that is sample count used through average calculation

Not allow to Handover to UTRANAccording to MSC default handover to UTRAN first

0 - 49 the range from ldquo-24 dB le CPICH EcIo lt -235 dBrdquo (reported as 1) to ldquo-05 dB le CPICH EcIo lt 0 dBrdquo (reported as 48) is used EcNo values below -24 dB shall be reported as 0 and values 0 dB and above shall be reported as 49 (ge) 0 - 63

the range from ldquo-116 dBm le CPICH RSCP lt -115 dBmrdquo (reported as 0) to ldquo-53 dBm le CPICH RSCP lt -52 dBmrdquo (reported as 63) is used RSCP values below -116 dBm shall be reported as 0 and values -52 dBm and above shall be reported as 63 (ge)

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter

1 Indicates always measuring

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 0 Adopts lsquoenhanced measurement reportrsquo message if at least one BSIC is configured for each frequency in BA list otherwise adopt lsquonormal measurement reportrsquo message

1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

ratio of UTRAN reselected cell)If more than one UTRAN cell meets above conditions then select the cell that has the largest RSCP

1048707 2 MS reports the measurement result of two adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more locations remaining MS reports the second strongest adjacent cell regardless of their frequency bands1048707 3 MS reports the measurement result of three adjacent cells with strongest signal in the frequency bands in adjacent cell list (excluding frequency band of serving cell) In the remaining locations MS reports the adjacent cells in the frequency band of local cell If there are still more location remaining MS reports the fourth strongest adjacent cell regardless of their frequency bandsThis parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdCS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter UE includes the SCALE value when it reports lsquoenhance measurement reportrsquo message SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

This parameter defines the added offset when UE reports signal field intensity If the field intensity of a certain GSM adjacent cell is n dBm then when mapping to RXLEV (0 - 63) UE will map n+ ScaleOrdPS to the original value corresponding to n It applies only in the case that lsquoenhanced measurement reportrsquo message is usedIf the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter If the field intensity of adjacent cell exceeds -48 dBm the real value can be reported by setting this parameter SCALE_ORD = 2 UE uses the value of cell that reports the best signal level

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 22: NPT Template ZTE 2G_Parameter_10-Oct-2012

0 1 2 3 0 -

This parameter indicates the MAX number of UTRANTDD adjacent 0 1 2 3 2 -

When BCC is not configured NCC is permitted for BSIC of some G YesNo No -

This parameter indicates if to allow UE to search UTRAN adjace YesNo No -

Interference cell No 1 ~ 6 According to planning -

This parameter defines BSS external cell DN EcId or related - 0 -

This parameter is an unique identification of adjacent cell hando 1 ~ 32 1 -

According to GSM specifications cell priority shall be considered 0 ~ 7 0

0 ~ 63 15

0 ~ 48 30

According to GSM specifications handover decisions depend upon 0 ~ 48 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

0Lower1High 0 0 0

YesNo No No

YesNo No No

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

According to GSM specifications cell priority shall be considered 0 ~ 7 0

5 5 5

15

0 ~ 100(0 -24 dB1 -23 dBhelliphellip48 24 dB10076dB)30

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 26 26

According to GSM specifications handover decisions depend upon0 ~ 48(0 -24 dB1 -23 dBhelliphellip48 24 dB) 30 24 24

0~48 9 9 9

0Lower1High 0 0 0

0Lower1High 0 0 0

0 ~ 100 40 30 30

Undefined Same layer of the home cell Upper layer of the home cell Lower layer of the home cellUndefined At same layer as this cell

0Lower1High 0 0 0

YesNo No No

YesNo No No

0Lower1High 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

This parameter is a unique identification of UTRAN adjacent cel 1 ~ 64 According to planning 0 0

0 ~ 63 5 0 0

0 ~ 49 5 0 0

0Lower1High 0 0 0

1 ~ 64 According to planning 0 0

0Lower1High 0 0 0

The setting of this parameter is subject to traffic in each frequency band General principles to set the parameters are as follows 0 If the traffic of each frequency band is almost equivalent and the operator has no choice over the frequency band 3 If the traffic of each frequency band is quite different and the operator hopes that MS enters a specific frequency band with priority

900-gt9003900-gt18005higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximated

according to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handovercongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cell

900-gt9003900-gt18005power available for MS in the cell BSC also

uses it to calculate PBGT valueMAX power level of MS can be divided into four

kinds FR HR AMR FR and AMR HRValue range is 0 - 31

higher than this parameter are potential candidates for handover MS with receiving level larger than minimum receiving level indicates that MS is at the edge of the serving cell Recommended value is usually approximatedaccording to MS receiving sensitivity When network observes uneven traffic distribution in certain cells MIN access level increases the resulting C1 and C2 to decrease the cell effective coverage range However the value of this parameter cannot be too large Otherwise large value change can bring lsquovoid arearsquo across cell boundaries to result in sudden call drop problem With this measure for traffic balance it is suggested that the level value shall not exceed -90dB Define the parameter value to 10 (that isfrom -101 dBm ~ -100 dBm) at initial network rollout stage or lower which is higher than the receiving sensitivity of MS (that is -102 dBm) However the 2 dB increase in parameter value is allowable in situations where network coverage is not a problem0 ~ 630lt -110 dBm1-110 dBm ~ -109 dBm2-109 dBm ~ -108 dBmhelliphellip62

900-gt90015900-gt180018to determine PBGT handover from an

adjacent cell to local cell900-gt90028900-gt180016

In order to avoid handover oscillations in cells atolerable level difference for forced handover is required which shall be lower than PBGT handover threshold in the reverse direction This parameter defines the maximum level difference value for forced handoverFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredcongestion When resource of object cell is lowerthan the congestion threshold forced handover can be implementedbe formed in the same physical area In brief limiting the PBGT handover defined in the specifications at one layer can reduce thenumber of handovers during the call thus improving the system reliability and communication qualityThe policy of handover between a macro cell layer and a micro cell layer mainly depends on the moving speed of MS An MS at higher moving speed will try to stay at the macro cell layer (upper layer of the micro cell layer) and an MS at lower moving speed will try to enter the micro cell layer (lower layer of the macro cell layer) Only in the case of non-PBGT handover and emergency will the undefined cell of the service area be considered as a candidate cell Same layer of the home cell Adjacent cell and local cell are in the same layer (PBGT handover possible) Upper layer of the home cell Adjacent cell is the upper layer of local cell (local cell is a micro cell) Lower layer of the home cell Adjacent cell is the lower layer of local cell (local cell is a macro cell)For above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredOnly the cell related to the serving cell can be a candidatein rapid fading handover This is a parameter of adjacent cell and is used to indicate if adjacent cell is related to the serving cellIn the case of 1800M and 900M network sharing site it is better to handover subscribers of 900M network to 1800M network At this time you can do directional handover trafficForced handover is a method for on-site traffic adjustment The forced handover direction is definite ie 1800M sector in the same direction To avoid influence on other cells the forced handover is performed only for a specific object cellFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferredHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cells

Handover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsHandover from GSM to UTRAN being triggered only indicates that UTRAN adjacent cell satisfies the minimum requirement for normal UE communication within itThis parameter is a prerequisite to ensure enough field intensity for uplinkdownlink of UTRAN adjacent cells It also controls the priority of a UE to handover to different adjacent cellsFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioCS is preferred Forcells with same RepPrioCS the cell with greater sum of RprtThoCSXXX (or XXXRprtThoCS) and RprtOffsetCSXXX (or XXXRprtOffsetCS) is preferredThis parameter is a unique identification of UTRANadjacent cell reselection objectFor above priorities if the priorityrsquos location has surplus then leave it to adjacent cell of the next priority For access technology such as UTRANFDD or frequency band such as GSM 900 the cell with high RepPrioPS is preferred Forcells with same RepPrioPS the cell with greater sum of RprtThoPSXXX (or XXXRprtThoPS) and RprtOffsetPSXXX (or XXXRprtOffsetPS) is preferred

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 23: NPT Template ZTE 2G_Parameter_10-Oct-2012

Optimization valueRelated FeatureDCS1800

Min MaxYes Flow control relatedYes Flow control related

Flow control related80 80 Flow control related80 80

80 80

800 800 Flow control related1400 1400 Flow control related10 10 BSSSGSN interaction related

85 85 85 85 85 85 Codec mode adjustment20 20 20 20 20 20 Codec mode adjustment25 25 25 25 25 25 Codec mode adjustment

50 50 TBF establishment and release10 10 TBF establishment and release15 15 TBF establishment and release

YES HR50 50 HR

-

-

-

Yes HO RelatedNo DR-

-

-

2500 2500 Resource Allocation related-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

No PFC relatedYes Paging related

Version of R99 Version of R99

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

SGSN is HW or MOTO 2 SGSN is other manufacturer 1 or 2

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 24: NPT Template ZTE 2G_Parameter_10-Oct-2012

20 20 Resource Allocation related20 20 Resource Allocation related10 10 Resource Allocation related25 25 Resource Allocation related10 10 Resource Allocation related5 5 Resource Allocation related10 10 Resource Allocation related5 5

Yes PS Cell reselection relatedNetwork operation mode 2 Network operation mode 2Paging related

No

Yes TBF establishment and releaseYes TBF establishment and release

80 80 Resource Allocation related-

Not retry

30 30 BSSSGSN interaction related30 30 BSSSGSN interaction related30 30 SuspendampResume30 30 SuspendampResume30 30 TBF establishment and release30 30 PFC related30 30 PFC related10 10

10 10

10 10

3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related10 10 BSSSGSN interaction related10 10 BSSSGSN interaction related30 30 BSSSGSN interaction related10 10 BSSSGSN interaction related3 3 BSSSGSN interaction related

180 180 BSSSGSN interaction related500 500 TBF establishment and release500 500 TBF establishment and release152 152 TBF establishment and release500 500 TBF establishment and release200 200 Resource Allocation related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 BSSSGSN interaction related3 3 SuspendampResume3 3 SuspendampResume3 3 TBF establishment and release3 3 PFC related3 3 PFC related

-

-

-

-

-

-

-

-

-

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

The satellite transmission is adopted by Gb interface Yes The satellite transmission is not adopted by Gb interface No

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 25: NPT Template ZTE 2G_Parameter_10-Oct-2012

20 20 Timer20 20 Timer

-

-

110 110 HO Related70 70 Timer

-

-

-

-

70 70 Timer100 100 HO Related

-

80 80 eMLPP-

60 60 Timer-

30 30 Timer20 20 DR50 50 eMLPP

-

-

50 50 HO Related-

-

30 30 Timer60 60 HO Related60 60 Assignment320 320 Timer3 3 Timer

-

-

0 0 eMLPPYes

-

-

-

-

-

Macro Cell Cell Level Property Parameters-

-

- Cell Level Property Parameters-

- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters

With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No With NCCR enabled adjacent cell supports PS service choose Yes Without NCCR enabled adjacent cell doesnot support PS service choose No

00 00

0 0

0 0

0 0

0 0 GERAN external cell parameters1 1 PBCCH related12 12 Cell Level Property Parameters

-

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 26: NPT Template ZTE 2G_Parameter_10-Oct-2012

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

-

-

0 0 UTRAN external cell parameters- Operation control parameters

0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters0 0 UTRAN external cell parameters

N Y Y Y Y N N Y Y Y Y NAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

No Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesAMR6 9 13 18 24 31 396 9 13 18 24 31 39AMR

3 4 3 5 5 5 63 4 3 5 5 5 6AMRStartmode codec Startmode codecAMR

1 1 AMR0 AMR

2 2 CCCH Load80 80 CCCH Load80 80 CCCH Load60 60 CCCH Load63 63 CCCH Load

- Cell Level Property Parameters- Operation control parameters- Operation control parameters- Cell Level Property Parameters- Cell Level Property Parameters- Cell Level Property Parameters

0 0 Cell Level Property ParametersCCCH uses one physical channel not combined with SDCCHCCCH uses one physical channel not combined with SDCCHCell Level Property Parameters

- Cell Level Property Parameters-

- Cell Level Property Parameters- Cell Level Property Parameters-

0 0

63 63 Cell SelectionNo No No No No No No No No No No No No No No NoNo No No No No No No No No No No No No No No NoCell Selection

No

No

15 25 Cell Selection-

- Channel related Parameters- Channel related Parameters-

3 3

63 63 Channel Request Access15 15 Channel Request Access2 2 Channel Request Access2 2 Channel Request Access

GSM 5 DCS1800 0 GSM 5 DCS1800 0Channel Request Access14 14 Channel Request Access

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 27: NPT Template ZTE 2G_Parameter_10-Oct-2012

Yes DTX1 1 DTX

Yes HRNo Dynamic HRYes Dynamic HR

1 1 HO Control Parameter28 28 HO Control Parameter1 1 HO Control Parameter5 5 HO Control Parameter4 4 HO Control Parameter0 0 HO Control Parameter5 5 HO Control Parameter2 2 HO Control Parameter

Yes HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterNo HO Control ParameterYes HO Control ParameterNo HO Control ParameterYes HO Control ParameterYes HO Control ParameterNo HO Control Parameter

15 15 HO Control Parameter12 12 HO Control Parameter1 1 HO Control Parameter20 20 HO Control Parameter

No

2 2

1 1

1 1

1 1

1 1

2 2

2 2

1 1

No

[Yes Yes Yes No No No No No][Yes Yes Yes No No No No No]

6 6

0 0

2 2

No

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 28: NPT Template ZTE 2G_Parameter_10-Oct-2012

0

10 10

[0 1 2 3 4 5 6 7][0 1 2 3 4 5 6 7]

No

Yes

No

Yes

No

No

No

No

GSM900

40 40

BCCH Norm

Allow priority

Yes

RLCMAC control block RLCMAC control block

No PBCCH relatedYes Yes Yes Yes Yes Yes Yes Yes YesYes Yes Yes Yes Yes Yes Yes Yes YesPBCCH related

10 10 PBCCH related20 20 PBCCH related63 63 PBCCH related5 5

Yes

0 0

8 8

Yes

Yes

12 12

0 0 0 0 0 0 0 0 PBCCH related6 6 PBCCH related

No PBCCH related8 bits 8 bits PBCCH related

60 60 PBCCH related50 50 PBCCH related

4 4 4 4 4 4 4 4 PBCCH relatedNo Operation control parametersNo CR Related ParametersYes CR Related Parameters

0 0 CR Related Parameters0 0 CR Related Parameters7 7 CR Related Parameters

Yes Directed RetryYes QueueNo QueueNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo eMLPPNo

No Dynamic SDCCH0 0 Dynamic priority31 31 Idle measurement

[0 10 15 20 25 63][0 10 15 20 25 63]Idle measurement1 1 Radio Link Timeout10 10 Radio Link Timeout

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 29: NPT Template ZTE 2G_Parameter_10-Oct-2012

6 6 Radio Link Timeout63 63 Radio Link Timeout

- GERAN external cell parameters0 0 Cell Level Property Parameters2 2 Resource Allocation related

PS Cell reselection related

PS Cell reselection relatedNo PS Cell reselection relatedYes TBF establishment and release

1000 1000 TBF establishment and release2000 2000 TBF establishment and release1500 1500 TBF establishment and release

8 8 Data transmission related10 10 Data transmission related8 8 Data transmission related8 8 Data transmission related

800 800 Codec mode adjustment10 10 PBCCH related4 4 PBCCH related0 0 Resource Allocation related3 3 TBF establishment and release

1500 1500 TBF establishment and release2 2 TBF establishment and release12 12 TBF establishment and release4 4 TBF establishment and release8 8 TBF establishment and release32 32 TBF establishment and release1 1 Codec mode adjustment

6144 6144 PS Cell reselection related384 384

No PS Cell reselection relatedNC0 PS Cell reselection related

048 048 PS Cell reselection relatedEM0 PS Cell reselection related

Type1 PS Cell reselection related1920 1920 PS Cell reselection related

0 0 PS power control0 0 PS power control

No PS power controlBCCH PS power control

0 0 PS power control0 0

5 5

0 0 PBCCH related5 5 PBCCH related3 3 PBCCH related2 2 PBCCH related14 14 PBCCH related55 55 PBCCH related

DTM related3 3 DTM related

TBF establishment and releaseNo Data transmission relatedYes Data transmission related

10 10 Codec mode adjustment10 10 Codec mode adjustment0 0 Codec mode adjustment

Need to enable NACC choose Yes Need not to enable NACC choose No

Need to enable NACC choose Yes Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose NoNeed to enable NACC choose Yes

Need not to enable NACC choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable DTM choose Yes No need to enable DTM choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

Need to enable EDGE service choose Yes Only enable GPRS service choose No

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 30: NPT Template ZTE 2G_Parameter_10-Oct-2012

2 2 8 8 2 2 8 8

1 1 Codec mode adjustment- TRX Level Property Parameters

Common TRX Common TRX TRX Level Property Parameters- TRX Level Property Parameters

TRX Level Property Parameters- TRX Level Property Parameters

Max output power - 0~6 dB Max output power - 0~6 dBTRX Level Property Parameters- TRX Level Property Parameters-

- Channel related Parameters- Channel related Parameters-

2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related2 2 Power Control Related

22-30 22-30 Power Control Related2 2 Power Control Related3 3 Power Control Related

30-36 30-36 Power Control Related2 2 Power Control Related3 3 Power Control Related1 1 Power Control Related

No Power Control Related2 2 Power Control Related2 2 Power Control Related1 1 Power Control Related2 2 Power Control Related2 2 Power Control Related

Yes Power Control RelatedYes Power Control Related

s s Power Control Related0 0 Power Control Related0 0 Power Control Related12 12 Power Control Related11 11 Power Control Related1 1 PS power control

No control PS power controlA PS power control

0 0 PS power control0 0 PS power control

- ULDL Interference HO1 1 ULDL Interference HO15 15 ULDL Interference HO1 1 ULDL Interference HO10 10 ULDL Interference HO16 16 ULDL Interference HO3 3 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO40 40 ULDL Interference HO3 3 ULDL Interference HO2 2 ULDL Interference HO

- CO-BCCH HO- CO-BCCH HO- CO-BCCH HO

BCCH Trx 1Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

BCCH Trx 5Non-BCCH TRX without fixed PDCH 3

Non-BCCH TRX with fixed PDCH 4

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 31: NPT Template ZTE 2G_Parameter_10-Oct-2012

0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO0 0 CO-BCCH HO

- CO-BCCH HO- CO-BCCH HO

4 4 TA HO4 4 TA HO63 63 TA HO0 0 Distance HO

According to actual situationsAccording to actual situationsTraffic HO 80 80 Traffic HO

For the same frequency band 20 for different frequency band it should be smaller than PBGTFor the same frequency band 20 for different frequency band it should be smaller than PBGTTraffic HO 110 110 Force HO5 5 Force HO3 3 Force HO2 2 Force HO

- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter0 UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN handover parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

7 7 UTRAN Reselection Parameter- UTRAN Reselection Parameter

0 0 UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter

5 (-12dB) 5 (-12dB) UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Reselection Parameter- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 32: NPT Template ZTE 2G_Parameter_10-Oct-2012

- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property- UTRAN Cell control parameter-GPRS property-

-

-

26 26

24 24

- -

- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter

No

No

0 0

0 0 Power Control Related

26 26

24 24

- -

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter- -

At same layer as this cell At same layer as this cell

0 0 UTRAN Neighbor cell handover and reselection parameterNo

No

0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0 UTRAN Neighbor cell handover and reselection parameter0 0

0 0 UTRAN Neighbor cell handover and reselection parameter

1800-gt180051800-gt9003900-gt90015

900-gt1800181800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

1800-gt180051800-gt9003

900-gt90015900-gt180018

1800-gt1800151800-gt90015900-gt90028

900-gt1800161800-gt1800281800-gt90038

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 33: NPT Template ZTE 2G_Parameter_10-Oct-2012

OBJECT FUNCTION PARAMETER Name Abbreviated Name

BTS Idle MIN received signal level to access RxLevAccessMinBTS IdleDedicate Control channel MAX power level MsTxPwrMaxCchBTS Idle Cell bar access CellBarAccess

BTS Idle Cell bar qualify CellBarQualifyBTS Idle MAX number of re-transmitting events times MretransBTS Idle Emergency call allowed EmergencyCall BTS Dedicate TA Min TAMIN

BTS Dedicate TA Allowed TaAllowed

BTS Dedicate TA Max TaMax

BTS Idle Cell reselecting hysteresis level ReselHysteresis

BTS Idle Reselection offset ReselOffset

BTS Idle Penalty time PenaltyTime

BTS Dedicate Uplink power control allowed PwrControlUl

BTS Dedicate Downlink power control allowed PwrControlDl

BTS IdleDedicate Power level PowerClass

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 34: NPT Template ZTE 2G_Parameter_10-Oct-2012

PARAMETER VALUE

Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

10 8 15~22 5 15~22

GSM 5 DCS1800 0 5 0 5 0

No No No No No

No No No No No

2 2 2 2 2

No No No No No0 0 0 0 0

63 63 63 63 63

63 63 63 63 63

4 7 7 7 7

0 0 8~10 0 8~10

0 0 0 0 0Yes Yes Yes Yes Yes

No Yes Yes No No

3 - - - -

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 35: NPT Template ZTE 2G_Parameter_10-Oct-2012

PARAMETER VALUEOptimization Range Value

IndoorGSM900 DCS1800

20~25 20~25

5 0

No No

No No

2 2

No No0 0

63 63

63 63

7 7

0 8~10

2~3 2~3

Yes Yes

Yes Yes

- -

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 36: NPT Template ZTE 2G_Parameter_10-Oct-2012

OBJECT Parameter NAME ABBREVIATED NAME Range Value amp Unit Default ValueOptimization Range Value

DUURB SU amp RURGSM900 DCS1800 GSM900 DCS1800

BSC Dynamic HR support indication DynaHREnable YesNo Yes YES YES No No

BSC AMR Half Active Codec Set AmrHalfAcs 475kbits 515kbits 590kbits 670kbits 74kbits 795kbitsYes No Yes No YesN Y Y Y Y N N Y Y Y Y N N Y Y Y Y N N Y Y Y Y N

BSC Thresholds of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrICM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Start mode AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BSC Reserved rate of EMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Reserved rate of eMLPP EmlppThs 0 - 100 (ge) 20 0 0 0 0

BSC Threshold for a single trx switched from FR to HR HRTHS 0 - 100 (ge) 70 50 50 60 60

BSC AMR full Active Codec Set AmrFullAcs Yes No Yes No Yes No Yes YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No YesNo Yes No Yes No Yes No Yes

BSC Threshold of AMR AmrThresholds 22252934 6 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 396 9 13 18 24 31 39

BSC Hysteresis of AMR AmrHysteresis [4 4 4] 3 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 63 4 3 5 5 5 6

BSC Initial codec mode IsAmrlCM Startmode codec Initial codec mode Startmode codec Startmode codecStartmode codecStartmode codecStartmode codec

BSC Startmode codec AmrStartMode 1 1 1 1 1

BSC Enable noise control IsAmrNscb YesNo No 0 0 0 0

BTS IMSI attachdetach allowed ImsIadAllowed YesNo 1 Yes Yes Yes Yes

0-63 0-63 0-63 0-63 0-63 0-63 0-63 0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

From 475 kbits 515 kbits 590 kbits 670 kbits 740 kbits 795 kbits 102 kbits to 122 kbits value range is YesNo (FR) 0-63 0-63 0-63 0-63 0-63 0-63 0-63

0 00 dB 1 05 dB 2 10 dB 63 315 dB0-15 0-15 0-15 0-15 0-15 0-15 0-15 0 00 dB 1 05 dB 2 10 dB 15 75 dB

2 Select the coding mode with the second lowest bit rate if there is more than one coding mode 3 Select the coding mode with the third lowest bit rate if there is more than two coding modes

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 37: NPT Template ZTE 2G_Parameter_10-Oct-2012

BSS DEFAULT OPTIMUM PARAMETER

OBJECT

OPTIMUM VALUE

General Parameters Name Parameters DBALL LAYER

DEFAULT VALUEMG MD

SET BTS

Radio link timeout on MS side MsRadioLKTmOut 64 64

Radio link timeout on BSS side BsRadioLKTmOut 64 64

MIN received signal level to access RxLevAccessMin -102 -90Cell reselection offset ReselOffset 0 24Temporary offset TemporaryOffset 0 0Penalty time PenaltyTime 0 0

POWER CONTROL RADIO LINK FAILURE THRESHOLD PCRLFTH

COVERAGE OF SERVING CELL CSCE

SET HANDOVER

Downlink power level(Threshold) HoDlLevThs -102 -90Downlink quality level(Threshold) HoDlQualThs 08-16 08-16

Downlink quality level(Window) HoDlQualWindow 4 4Downlink receive level of intra-ho Threshold IntraHoDlLev -75 -75Uplink power level(Threshold) HoUlLevThs -107 -98Uplink quality level(Window) HoUlQualWindow 4 4Uplink quality level(Threshold) HoUlQualThs 16-32 16-32

Uplink receive level of intra-ho Threshold IntraHoUlLev -75 -75

Priority of handover HoPriority 3 4

SET POWER CONTROL

Uplink power level PcUlLevWindow 2 2

Downlink power level PcdlLevWindow 2 2

Uplink quality level PcUlQualWindow 2 2

Downlink quality level PcDlQualWindow 2 2

MIN power level of MS MSTXPWRMIN 5 4

Decrease downlink level Threshold PCDLREDLEVTHS -75 -75

Increase downlink level Threshold PCDLINCLLEVTHS -85 -85

Decrease downlink quality Threshold PCDLREDQUALTHS 02 - 04 02 - 04

Increase downlink quality Threshold PCDLINCLQUALTHS 08-16 08-16

Decrease uplink level Threshold PCULREDLEVTHS -80 -80

Increase uplink level Threshold PCULINCLLEVTHS -90 -90

Decrease uplink quality Threshold PCULREDQUALTHS 02 - 04 02 - 04

Increase uplink quality Threshold PCULINCLQUALTHS 16-32 16-32

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 38: NPT Template ZTE 2G_Parameter_10-Oct-2012

OPTIMUM VALUE OPTIMIZATION RANGE VALUEALL LAYER Macro Layer

DEFAULT VALUE Dense Urban Area Urban Area Sub Urban Area

IG IG OG OD GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max Min

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

64 64 64 64 28 36 28 36 28 36 28 36 28 36 28

-90 -90 -90 -90 -102 -95 -88 -102 -95 -88 -105 -95

36 38 0 30 0 0 16 20 0 0 16 20 0 0 16

40 40 0 40 0 0 0 0 0 0 0 0 0 0 0

40 40 0 20 0 0 0 0 0 0 0 0 0 0 0

-90 -90 -90 -90 -95 -92 -95 -92 -9508-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

4 4 4 4 3 3 3 3 3 3 3 3 3 3 3

-75 -75 -75 -75 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80

-95 -98 -95 -98 -101 -104 -101 -104 -101

4 4 4 4 3 3 3 3 3 3 3 3 3 3 316-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

-75 -75 -75 -75 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75

3 4 3 4 3 4 3 4 3

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

2 2 2 2 2 2 2 2 2

5 4 5 4 5 4 5 4 5

-75 -75 -75 -75 -75 -75 -75 -75 -75

-85 -85 -85 -85 -85 -85 -85 -85 -85

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16 08-16

-80 -80 -80 -80 -80 -80 -80 -80 -80-90 -90 -90 -90 -90 -90 -90 -90 -90

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04

16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32 16-32

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 39: NPT Template ZTE 2G_Parameter_10-Oct-2012

OPTIMIZATION RANGE VALUEMacro Layer Micro Layer

UNITSub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

36 28 36 28 36 28 36 28 36 28 36 28 36 1 SACCH

-88 -105 -95 -88 -90 -85 -90 -85 -90 -85 -90 -85 dBm

20 0 0 16 20 0 0 16 20 0 0 16 20 dB

0 0 0 0 0 0 0 0 0 40 40 dB

0 0 0 0 0 0 0 0 0 40 60 40 60 SEC

SACCH

-92 -95 -92 -95 -92 -95 -92 dBm08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm

-70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 -80 -70 dBm

-104 -101 -104 -101 -104 -101 -104 dBm

3 3 3 3 3 3 3 3 3 3 3 3 3 dBm16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

-65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 -75 -65 dBm4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

4 5 4 5 4 5 4 dBm-75 -75 -75 -75 -75 -75 -75 dBm-85 -85 -85 -85 -85 -85 -85 dBm

02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage08-16 08-16 08-16 08-16 08-16 08-16 08-16 percentage

-80 -80 -80 -80 -80 -80 -80 dBm

-90 -90 -90 -90 -90 -90 -90 dBm02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 02 - 04 percentage16-32 16-32 16-32 16-32 16-32 16-32 16-32 percentage

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 40: NPT Template ZTE 2G_Parameter_10-Oct-2012

DATABASE VALUE

ParametersMacro Layer

Dense Urban Area Urban Area Sub Urban Area

GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Min Max Min Max Min Max Min Max Min Max MinMsRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

BssRadioLKTmOut 6 8 6 8 6 8 6 8 6 8 6

RxLevAccessMin 8 15 22 8 15 22 5 15ReselOffset 0 0 8 10 0 0 8 10 0 0 8TemporaryOffset 0 0 0 0 0 0 0 0 0 0 0PenaltyTime 0 0 0 0 0 0 0 0 0 0 0

PCRLFTH

CSCE

HoDlLevThs 15 18 15 18 15

HoDlQualThs 3 3 3 3 3HoDlQualWindow 3 3 3 3 3 3 3 3 3 3 3IntraHoDlLev 30 40 30 40 30 40 30 40 30 40 30HoUlLevThs 9 6 9 6 9HoUlQualWindow 3 3 3 3 3 3 3 3 3 3 3HoUlQualThs 4 4 4 4 4IntraHoUlLev 35 45 35 45 35 45 35 45 35 45 35HoPriority 3 4 3 4 3

PcUlLevWindow 2 2 2 2 2

PcdlLevWindow 2 2 2 2 2

PcUlQualWindow 2 2 2 2 2

PcDlQualWindow 2 2 2 2 2

MSTXPWRMIN 19191919 13131313 19191919 13131313 19191919

PCDLREDLEVTHS 35 35 35 35 35PCDLINCLLEVTHS 25 25 25 25 25PCDLREDQUALTHS 1 1 1 1 1PCDLINCLQUALTHS 3 3 3 3 3PCULREDLEVTHS 30 30 30 30 30PCULINCLLEVTHS 20 20 20 20 20PCULREDQUALTHS 1 1 1 1 1PCULINCLQUALTHS 4 4 4 4 4

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 41: NPT Template ZTE 2G_Parameter_10-Oct-2012

DATABASE VALUEMacro Layer Micro Layer

Sub Urban Area Rural Area Outdoor Indoor

GSM1800 GSM900 GSM1800 GSM900 GSM1800 GSM900 GSM1800

Max Min Max Min Max Min Max Min Max Min Max Min Max

8 6 8 6 8 6 8 6 8 6 8 6 8

8 6 8 6 8 6 8 6 8 6 8 6 8

22 5 15 22 20 25 20 25 20 25 20 25

10 0 0 8 10 0 0 8 10 0 0 8 10

0 0 0 0 0 0 0 0 0 4 4

0 0 0 0 0 0 0 0 0 2 3 2 3

18 15 18 15 18 15 18

3 3 3 3 3 3 3

3 3 3 3 3 3 3 3 3 3 3 3 3

40 30 40 30 40 30 40 30 40 30 40 30 40

6 9 6 9 6 9 6

3 3 3 3 3 3 3 3 3 3 3 3 3

4 4 4 4 4 4 4

45 35 45 35 45 35 45 35 45 35 45 35 45

4 3 4 7 7 7 7

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

2 2 2 2 2 2 2

13131313 19191919 13131313 19191919 13131313 19191919 13131313

35 35 35 35 35 35 35

25 25 25 25 25 25 25

1 1 1 1 1 1 1

3 3 3 3 3 3 3

30 30 30 30 30 30 30

20 20 20 20 20 20 20

1 1 1 1 1 1 1

4 4 4 4 4 4 4

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 42: NPT Template ZTE 2G_Parameter_10-Oct-2012

REMARK

900M191919191800M13131313

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 43: NPT Template ZTE 2G_Parameter_10-Oct-2012

TARGET CELL

ParameterOPTIMUM VALUE OPTIMIZATION RANGE VALUE

MG MD IG ID OG OD MG

DEFAULT Min

SO

UR

CE

CE

LL

MG

NCellLayer SAME LOWER LOWER LOWER LOWER LOWER SAME

HoMarginPbgt 6 6 0 0 0 0 4

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 2 2 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

MD

NCellLayer SAME SAME LOWER LOWER SAME LOWER SAME

HoMarginPbgt 6 6 0 0 10 0

HoMarginRxLev 3 3 10 3 10 3 0

HoMarginRxQual 2 2 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OG

NCellLayer UPPER SAME LOWER LOWER SAME LOWER UPPER

HoMarginPbgt 0 0 0 0 4 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

OD

NCellLayer UPPER UPPER LOWER LOWER UPPER SAME UPPER

HoMarginPbgt 0 0 0 0 0 4

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

IG

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 3 3 3 3 3 3 0

HoMarginRxQual 3 -10 3 -10 3 -10 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

ID

NCellLayer UPPER UPPER SAME SAME UPPER UPPER UPPER

HoMarginPbgt 0 0 4 0 0 0

HoMarginRxLev 10 3 10 3 10 3 0

HoMarginRxQual 0 3 0 3 0 3 0

RxLevMin -100 -90 -90 -90 -85 -90 -100

Hopriority 3 4 3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 44: NPT Template ZTE 2G_Parameter_10-Oct-2012

TARGET CELL

OPTIMIZATION RANGE VALUEMG MD IG ID OG

Max Min Max Min Max Min Max MinSAME LOWER LOWER LOWER LOWER LOWER LOWER LOWER

6 6 0 0

3 3 0 3 3 0

2 2 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

SAME SAME SAME LOWER LOWER LOWER LOWER SAME

6 4 6 0 0 10

3 0 3 0 10 0 3 0

2 0 2 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER SAME

0 0 0 0 4

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER LOWER LOWER LOWER LOWER UPPER

0 0 0 0

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 4 6 0 -2

3 3 0 3 3 0

3 -10 0 3 -10 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

UPPER UPPER UPPER SAME SAME SAME SAME UPPER

0 0 8 10 4 6

10 0 3 0 10 0 3 0

3 0 3 0 3 0 3 0

-95 -90 -85 -88 -80 -88 -80 -88

3 4 3 4

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 45: NPT Template ZTE 2G_Parameter_10-Oct-2012

TARGET CELL

OPTIMIZATION RANGE VALUEParameter

DATABASE VALUEOG OD MG

Max Min Max Unit Min MaxLOWER LOWER LOWER NCellLayer SAME SAME

0 0 dB HoMarginPbgt 28 30

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer SAME SAME

15 0 dB HoMarginPbgt 30

10 0 3 dB HoMarginRxLev 24 27

3 0 3 dB HoMarginRxQual 24 26

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

SAME LOWER LOWER NCellLayer UPPER UPPER

6 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER SAME SAME NCellLayer UPPER UPPER

0 4 6 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

3 3 dB HoMarginRxLev 24 27

3 -10 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

UPPER UPPER UPPER NCellLayer UPPER UPPER

0 0 dB HoMarginPbgt 24

10 0 3 dB HoMarginRxLev 24 34

3 0 3 dB HoMarginRxQual 24 27

-80 -88 -80 dBm RxLevMin 10 15

3 4 Hopriority 3

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 46: NPT Template ZTE 2G_Parameter_10-Oct-2012

DATABASE VALUEMD IG ID OG OD

Min Max Min Max Min Max Min Max MinLOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER LOWER

30 24 24 24

27 24 27 27 24 27

26 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

SAME SAME LOWER LOWER LOWER LOWER SAME SAME LOWER

30 24 24 39

27 24 34 27 24 34

26 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER SAME SAME LOWER

24 24 24 30

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER LOWER LOWER LOWER LOWER UPPER UPPER SAME

24 24 24 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 30 22 24

27 24 27 27 24 27

14 24 27 14 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

UPPER UPPER SAME SAME SAME SAME UPPER UPPER UPPER

24 34 30 24

27 24 34 27 24 34

27 24 27 27 24 27

20 25 22 30 22 30 22 30 22

4 3 4 3

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 47: NPT Template ZTE 2G_Parameter_10-Oct-2012

DATABASE VALUEOD

Max UnitLOWER

24 dB

27 dB

14 dB

30

4

LOWER

24 dB

27 dB

27 dB

30

4

LOWER

24 dB

27 dB

14 dB

30

4

SAME

30 dB

27 dB

27 dB

30

4

UPPER

24 dB

27 dB

14 dB

30

4

UPPER

24 dB

27 dB

27 dB

30

4

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 48: NPT Template ZTE 2G_Parameter_10-Oct-2012

OBJECT Parameter name ABBREVIATED NAMEBTS PS offset which is added when UE reports rxlev value ScaleOrdPS

BTS PS measurement type reported by UE ReportTypePS

BTS PS number of same frequency adjacent cells in report SvrBandRprtPS

BTS PS measurement reporting rate of adjacent cell ReportRatePS

BTS PS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatRrptPS

BTS PS Multiband report indication MulBndRprtPS

BTS TDD multi report PS TDDMulRatRrptPS

BTS PS UE report invalid cell level allowed InvldBSICRprtPS

BTS Punishment period of UTRAN cell when handover failure HoFailPenalTmUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS Slide window size for calculating EcNo or RSCP average value to HoWindowUTRAN

BTS UTRAN handover ServiceHo

BTS Directed retry to UTRAN cell allowed InterSysRdCtrl

BTS Inter system handover supported InterSysHoCtrl

BTS Threshold when UE performs search under specialized mode Qsearch_C

BTS Initial parameter instead of qsearch_c before UE receiving qsearch QsearchCInit

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS RSCP offset handover to UTRAN adjacent cell HoRSCPOffsetUTRAN

BTS EcNo offset handover to UTRAN adjacent cell HoEcNoOffsetUTRAN

BTS CS adjacent cell report priority RepPrioCS

BTS PS adjacent cell report priority RepPrioPS

BTS Channel location of si2quater broadcast SI2QuaterPos

BTS CS measurement type reported by UE ReportTypeCS

BTS Measurement threshold of UE performing UTRAN cell reselection Qsearch_I

BTS CS number of same frequency adjacent cells in report SvrBandRprtCS

BTS CS class of reported quantities of UTRAN adjacent cells FDDrepQntCS

BTS MIN EcNo of UTRAN reselecting cell FDD_Qmin

BTS CS MAX number of UTRANFDD adjacent cells in measurement repFDDMulRatarrptCS

BTS FDD reselection offset FDD_Qoffset

BTS CS measurement reporting rate of adjacent cell ReportRateCS

BTS CS Multiband report indication MulBndRprtCS

BTS CS offset which is added when UE reports rxlev value ScaleOrdCS

BTS TDD reselection offset TDD_Qoffset

BTS CS MAX number of UTRANTDD adjacent cells in measurement repTDDMulRatRrptCS

BTS CS UE report invalid cell level allowed InvldBSICRprtCS

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 49: NPT Template ZTE 2G_Parameter_10-Oct-2012

Parameter Group Range Value amp Unit

UTRAN Cell control parameter-GPRS prop0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Cell control parameter-GPRS prop0 1

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 Normal 1 Low

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS prop0 1 2 3

UTRAN Cell control parameter-GPRS propYES NO

UTRAN handover parameter 1 - 255 (period of measurement or pretreatment measurement report)

UTRAN handover parameter 2010-1-31

UTRAN handover parameter 2010-1-31

UTRAN handover parameter

UTRAN handover parameter YesNo

UTRAN handover parameter YesNo

UTRAN handover parameter

UTRAN handover parameter

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Neighbor cell handover and resele0 Lower1 High

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 RSCP 1 EcNo

UTRAN Reselection Parameter 0= -20dB 1= -6dB 2= -18dB 3= -8dB 4= -16dB 5= -10dB 6= -14dB 7= -12d

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 means always choose 3G neigbor cell1 = -28 dB2 = -24 dBhelliphellip15 = 28 dB

UTRAN Reselection Parameter 0 Normal 1 Low

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter 0 0 dB 1 10 dB 2 Automatic determined by UE

UTRAN Reselection Parameter 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15

UTRAN Reselection Parameter 0 1 2 3

UTRAN Reselection Parameter YES NO

According to MSC default not handover to UTRAN firstAccording to MSC default not allowed to handover to UTRAN

When RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never0 Indicates Qsearch_I parameter1 Indicates always measuring

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 - 63 0=0dBm 1=1dBm helliphellip 63=63dBm0 - 49 0=0dB 1=05dB helliphellip 49 gt24dB

0 Broadcast on normal BCCH block1 Broadcast on extended BCCH block (AGCH_BLOCK reservation value will be 1) 1 Adopts lsquonormal measurement reportrsquo messageWhen RLA_C of serving cell is lower than (0 - 7) or higher than (8 - 15) the UTRAN neighbor cell measuring will be triggered0 - 6 means L=-98+n4 dbm 7 means always 8 - 14 means L=-78+4 (n-8) dbm 15 means never

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter
Page 50: NPT Template ZTE 2G_Parameter_10-Oct-2012

Default value Optimization value

0 0

0 0

2 2

0 0

2 2

0 0

2 2

NO NO

7 7

6 6

6 6

According to MSC default handover to UTRAN firstAccording to MSC default handover to UTRAN first

No No

No No

15 15

0 0

0 0

0 0

0 0

0 0

5 5

5 5

0 0

0 0

5 5

5 5

0 0

0 0

0 0

1 1

15 7

2 2

1 1

0 7 ( -12 dB)

2 2

8 0

0 0

0 0

0 0

8 5 (-12dB)

2 2

NO NO

  • Change History
  • ALL_RAN_Parameters
  • COVERAGE_PARAMETER
  • COMMON PRMTR
  • CLUSTER PRMTR
  • Adjacent layering parameter
  • ISHO 2G - 3G parameter