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Transcript of A3
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PROJECT PRESENTATION ON
ONLINE PORTABLE ECG MONITORING SYSTEM
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MEMBERS ASSOCIATEDAnkita (1101289212)Namrata shandilya (1101289243)Nibedita barik (1101289245)Priya (1101289258)
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PROJECT DETAILS1. INTRODUCTION2. EMBEDDED SYSTEM3. AIM OF THE PROJECT4. DESCRIPTION5. BLOCK DIAGRAM6. HARDWARE AND SOFTWARE USED7. HARDWARE DESCRIPTION8. FUTURE SCOPE 9. CONCLUSION10. REFERNECES
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INTRODUCTION:-
Cardiac monitoring is one of the important field of telemedicine. In this project we present a prototype of embedded system for constant ECG monitoring of patient .
Due to change in the lifestyle now a days most of the people are suffering from cardiac problems .so, there is a need of developing this type of system where doctor and patient can communicate with each other through online.
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EMBEDDED SYSTEMEmbedded system can be defined as a
combination of hardware and software which contain some programmable code that is specifically designed for a particular function.
Embedded system are electronic devices that incorporate microprocessors or microcontroller with in their implementations. The main purpose of the microprocessors are to simplify the system design and provide flexibility.
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AIM OF THE PROJECT The main aim of this project is to develop remote
health monitoring system to monitor online medical parameters which can reach the nodal unit from everywhere.
This is mainly for the people who are suffering from heart diseases and also to assist a doctor to
check the measurements and update the user with clinical advisories.
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DESCRIPTIONIn the current proposal it calculates the heart rate of a
patient and sends data to PC where it can be viewed graphically and different related data can be extracted.
On demand one can press the switch which will activate the heart beat sensor and takes necessary details for sending information to the PC.
All the data connected are sent to a PC. In the PC a graphical interface is designed in Lab-VIEW which will show the analogue waveform.
Online data conversation can be done among the user and the doctor.
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BLOCK DIAGRAM
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HARDWARE USED:-Microcontroller (AT89C51)Serial driver (MAX 232)ADC (O8O4)LCD (16*2)Power supply
SOFTWARE USED:-Keil softwareProteusVisual studioSQL Labview
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HARDWARE DESCRIPTION:-
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1 2
J1SIL-100-02
C1470uF
VI1 VO 3
GN
D2
U27805
C3100uF
GND
XTAL218
XTAL119
ALE30
EA31
PSEN29
RST9
P0.0/AD0 39
P0.1/AD1 38
P0.2/AD2 37
P0.3/AD3 36
P0.4/AD4 35
P0.5/AD5 34
P0.6/AD6 33
P0.7/AD7 32
P1.01
P1.12
P1.23
P1.34
P1.45
P1.56
P1.67
P1.78
P3.0/RXD 10
P3.1/TXD 11
P3.2/INT0 12
P3.3/INT1 13
P3.4/T0 14
P3.7/RD 17P3.6/WR 16P3.5/T1 15
P2.7/A15 28
P2.0/A8 21
P2.1/A9 22
P2.2/A10 23
P2.3/A11 24
P2.4/A12 25
P2.5/A13 26
P2.6/A14 27
U3
AT89C51
X1CRYSTAL
C6
1uF
R2100R
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16
J3 66226-016
P2.0P2.1P2.2P2.3P2.4P2.5P2.6P2.7
P3.0P3.1P3.2P3.3
P1.0P1.1P1.2P1.3P1.4P1.5P1.6P1.7
GND
VCC
P2.
2
P2.
3
P2.
4P
2.5
P2.
6P
2.7
T1IN11
R1OUT12
T2IN10
R2OUT9
T1OUT 14
R1IN 13
T2OUT 7
R2IN 8
C2+
4
C2-
5
C1+
1
C1-
3
VS+ 2
VS- 6
U4
MAX232
C7
1uF
C8
1uF
C91uF
VCC
C101uF
GND
P3.0P3.1
162738495
J5
CONN-D9F
R1100R
C4
1nF
C5
1nF
P0.0P0.1P0.2P0.3P0.4P0.5P0.6P0.7
2 3 4 5 6 7 8 91
RP1 RESPACK-8
rst
rst
A K
D5
LED-GREEN
+12v
OUT1 21
ADD B24 ADD A25
ADD C23
VREF(+)12
VREF(-)16
IN31
IN42
IN53
IN64
IN75
START 6
OUT5 8
EOC 7
OE 9
CLOCK 10
OUT2 20
OUT7 14OUT6 15
OUT8 17
OUT4 18OUT3 19
IN228 IN127 IN026
ALE22
U5
ADC0808
P1.5P1.6
P1.1P1.4
P1.3
P0.7P0.6
P0.4P0.5
P0.3P0.2P0.1P0.0
P1.2
P1.7
123
J4
CONN-SIL3123
J6
CONN-SIL3
+12v
1234
J10
CONN-SIL4
D1
1N4007D2
1N4007D3
1N4007D4
1N4007
VI1 VO 3
GN
D2
U17812
C21000uF
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FUTURE SCOPE OF PROJECT:-Currently this project is being developed for
the laboratory purpose but in future it can also be extended as a mobile application.
In future it can be implemented through the common mobile phone. An Alarm system with a notification mechanism can be an added benefit to alert both the physician and the patient in case of any abnormalities.
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CONCLUSIONThis project provide immense help to modern
healthcare where doctor and patient can communicate through online.
And also provide immediate notification of any abnormalities with continuous medical observation.
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REFERENCES[1] Akinori Ueno, Yasunao Akabane, Tsuyoshi Kato, Hiroshi Hoshino,
Sachiyo Kataoka and Yoji Ishiyama, April 2007 , “Capacitive Sensing of Electrocardiographic Potential Through Cloth from the Dorsal Surface of the Body in the Supine Position”, IEEE transaction on biomedical engineering, Vol. 54, No. 4,.
[2] Bronzino, Joseph D., 2000, “The Biomedical Engineering Handbook”, IEEE Press.
[3] C.Rodriguez, S. Borromeo, R. de la Prieta, J.A Hernández, N.Malpica, "Wireless ECG based on Bluetooth protocol: design and Implementation", Proc. Of IEEE, International Conference, 2006.
[4] Spinelli. E.M., Martnez. N.H., and Mayosky. M.A., Dec 1999, “A Transconductance Driven Right-Leg Circuit, “ IEEE Trans. Biomed Eng., Vol.46, pp. 1466-70