Post on 11-Apr-2018
UAVFlightServicesCompany
Adedicatedteamofaviators,technologists,andengineers.
WhatWeDo
UAVflightservicesfordatacollection,mapping,andinspection
WhatSetsusApart
Extensivefieldexperience,strategicpartnerships,andquickturnaroundcustomhardware&softwaresolutions.
We help companies make critical business decisions faster, safer, and more cost effective through tightly integratedUAV data collection, processing,and presentation services.
THEPROCESSHowitWorks
InitialPlan&Review Quote
FLIGHTOPERATIONS
MissionPlanning
PostProcessing
DATADELIVERED
. . .Work BACKWARD
FAAApproval Insurance &Safety Experience Processing
Section333orPart107 Adequate InsuranceCoverage
SituationalAwareness Hardware
Licensed Operators Safety Plan&OperationalChecklists Type ofAircraft Software
AuthorizationsforSpecificAirspace Pre-Flight Briefing Application
Specific Data Types
CHECKLISTForContractingUASOperations
WIND&PRECIP
UAVoperationsarebestconductedonsunnyorovercastdays,whenwindsare<~15mph.Lightprecipitationismanageable,butavoidedwheneverpossible.
CAPABILITIESGeneralFlightConsiderations
FLIGHTTIME
MostUAVcanflyfor15– 30minutes,andbycombiningflightscancoverfromtenstohundredsofacres.FixedwingUAScancovermoreareaperflight,andshouldbeusedforlargermappingprojects.
TERRAIN&OBSTACLES
FlatorrollingterrainwithlittletreecoverisidealforUAVmappingprojects.Multirotors canoperateoutofsmallerlaunchareasandoperateclosertostructures.
CONDITIONSWeather&SiteConsiderations
TEMPERATURE
UAVscanoperateyearroundinalmostanytemperature,withthehumanoperatorsbeingthelargestconcern.Formostcases,use0– 100Fasaguide.
LINEOFSIGHT
UASmustremainwithintheoperator’slineofsight,incaseofemergency.Thisalsomeansoperationsmustbeconductedbetweendawnanddusk.
OPERATIONALCONSTRAINTSSimplifiedRulesforPlanningPurposes
AIRSPACE
Inmostcases,commercialUASmustnotoperatewithincontrolledairspacenearairports,andarelimitedto400FTabovetheground&structures.
DATA
Whatcanbecaptured?
Sensors
LIDAR ?IR
Current Future
Viz
VISIBLE
HighResolutionStill&Video
IR&MULTISPECTRAL
Thermal&Multispectral
LIDAR
PurchasedRangerMiniVUX fromPhoenixLiDAR,AprilDelivery
OTHER
RTKGPSGasDetectors
YourSensorHere
DATATYPES
Geotagged Imagery
Geo-referencedstill&video
GIS
Highresolutionorthoimagery,
multispectral&rasterelevationmodels
PointClouds
Photogrammetricpointcloudsinstandardformats
CAD
Contours&BasicFeatureExtraction
USGSCapeCod
Sandwich,MABeachErosion
• Projectdocumentation• Communityoutreach• Coastalerosiontracking• Vegetationhealth
ControlPointTarget
PointCloudMeasurements
DigitalElevationModel
JennessBeach
UAVcomparisonvs.existingdataset
ControlPointTargets
FeatureExtraction
FeatureExtraction
Multispectral-NDVI
DigitalElevationModel
StockpileVolumeCalculation
Cross-sectionalHeightProfile
$+$+
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Creek, The
Limericksilt loam
Munson and Raynhamsilt loams, 2 to
6 percent slopes
Peru fine sandyloam, 0 to 20 percent
slopes, very stony
MuckandPeat
Lyman-Marlow veryrocky loams, 5 to30 percent slopes
Colton and Stetsonsoils, 20 to 30percent slopes
Belgrade andEldridge soils, 0
to 3 percent slopes
Enosburg andWhately soils, 0 to3 percent slopes
Stetson gravellyfine sandy loam, 12to 20 percent slopes
Scantic siltloam, 0 to
2 percent slopes
Colton and Stetsonsoils, 30 to
60 percent slopes
Winooskivery fine
sandy loam
Stetson gravellyfine sandy loam, 0to 5 percent slopes
Winooskivery fine
sandy loam
Winooskivery fine
sandy loam
Winooskivery fine
sandy loamStetson gravelly
fine sandy loam, 0to 5 percent slopes
Colton and Stetsonsoils, 20 to 30percent slopes
Stetson gravellyfine sandy loam, 0 to
5 percent slopes
Livingstonclay
Belgrade andEldridge soils, 0
to 3 percent slopes
Duane andDeerfield soils, 0
to 5 percent slopes
Hinesburg finesandy loam, 15
to 25 percent slopes
Hadley veryfine sandy
loam
Stetson gravelly finesandy loam, 5 to
12 percent slopes
Peru fine sandyloam, 20 to 60 percent
slopes, very stonyScantic siltloam, 0 to
2 percent slopes
RIVER RD
GAR
PL
RACEWAY RD
PARK ST
VT R
OUTE
15
PARK ST
JER
IHL
DEP
OT
ST
CREEKSIDE RD
DICKINSON ST
LIBERTY LN
PALMER LN
JACOBS
HILLRD
HAR
VEST
R
UN
MAPLE R
DG
Legend$+ Public Drinking Water Sources
Utility Pole
_̀ Hazardous Waste Site
Vermont Gas
Electric Transmission Line
Topography - 2 ft interval
660 - 750 Feet
752 - 850 Feet
852 - 950 Feet
952 - 1012 Feet
Stream Centerline
Water Body
Vermont Significant Wetland Inventory
Groundwater Source Protection Area
FEMA Floodplain
0.2% Annual Chance Flood Hazard
Special Flood Hazard Area
ANR River Corridor
Soil Map Unit
Tax Parcel Boundary
.
1:1,200
0 200 400100 Feet
12/02/2016
Document Path: D:\Projects16\Jericho\Sawmill_20161130.mxd
Source:Parcel Boundary - Jericho - 2016; Underhill - 2012Imagery of project area - 2016 procured by AirSharkANR River Corridor - January 2014, see http://floodready.vermont.gov/FEMA DFIRM floodplain data - 2011
Disclaimer:The accuracy of information presented is determined by its sources. Errors and omissions may exist. The Chittenden County Regional Planning Commission is not responsible for these. Questions of on-the-ground location can be resolved by site inspections and/or surveys by a registered surveyor. This map is not sufficient for delineation of features on-the-ground. This map identifies the presence of features, and may indicate relationships between features, but is nota replacement for surveyed information or engineering studies.
Jericho Riverside Future Street
Network Study Base Map
Q+AThankYou
jon@airshark.io
info@airshark.io
6034279946
CONTACTwww.airshark.io