ECG Monitoring System Based on Microcontroller

https://doi.org/10.24237/djes.2016.09209

Authors

  • Hadeel Nasrat Abdullah Department of Electrical Engineering, University of Technology
  • Wajid Dawood Alwan Department of Electrical Engineering, University of Technology

Keywords:

ECG monitoring system, microcontroller

Abstract

Health monitoring systems becomes a hot topic and important research field. Electrocardiogram (ECG) signal is a diagnoses tool that measures and records the electrical activity of the heart, taking care of patient’s health. Therefore, monitoring this signal becomes a necessary need to take care of human health. In this paper, two procedures are proposed; first, monitoring the ECG signal, second for sending the signal of monitoring patients and ECG data through Serial communication port to the other pc or nurse. AT89C51 microcontroller uses to perform these procedures including all the necessary connections of the microcontroller with other components and programming the microcontroller using assembly language to send the signal serially. At both transmitting and receiving sides, the signal was gives the same setting of baud rate, stop bits, number of data bits, parity to ensure secure arrival of data without any lossless.

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References

Claudio D. C., Antonella M. and Rosario M., “A Smart ECG Measurement System Based on Web-Service-Oriented Architecture for Telemedicine Applications”, IEEE Transactions on Instrumentation and Measurement, Vol. 59, No. 10, October 2010.

Hossein M., Nadia K., David A. and Pierre V., “Compressed Sensing for Real-Time Energy-Efficient ECG Compression on Wireless Body Sensor Nodes”, IEEE Transactions on Biomedical Engineering, Vol. 58, No. 9, September 2011.

Muhammad A. M., Janice G. Mazidi and Rolin D. M., "The 8051 Microcontroller and Embedded Systems Using Assembly and C", Prentice Hall. Inc., second edition, 2000.

Published

2016-06-01

How to Cite

[1]
H. . Nasrat Abdullah and W. . Dawood Alwan, “ECG Monitoring System Based on Microcontroller”, DJES, vol. 9, no. 2, pp. 62–72, Jun. 2016.