DOI QR코드

DOI QR Code

A Study on Emergency Monitoring Robot System by Back-Propagation Algorithm

  • Yoo, Sowol (Department of Chemistry, Chosun University) ;
  • Kim, Miae (Department of Chemistry, Chosun University) ;
  • Lee, Kwangok (Department of Chemistry, Chosun University) ;
  • Bae, Sanghyun (Department of Chemistry, Chosun University)
  • Received : 2014.02.18
  • Accepted : 2014.03.25
  • Published : 2014.03.30

Abstract

This study aims to implement the emergency monitoring robot system which predicts the current state of the patients without visiting the medical institutions by measuring the basic health status of the user's blood pressure, heartbeat, and basic health status of body temperature in the disaster emergency situation based on the Smart Grid. By arranging a large number of sensor(blood pressure, heartbeat, body temperature sensor) and measuring the bio signs, so the attached wireless XBee sensor can be stored in DB of robot, and it aims to draw the current state of the patients by analysis of stored bio data. Among 300 data obtained from the sensor, 1st data to 100th data were used for learning, and from 101st data to 300th data were used for assessment. 12 results were different among the total 300 assessment data, so it shows about 96% accuracy.

Keywords

References

  1. "Health industry trends", Korea Health Industry Development Institute (KHIDI), 2009
  2. S.-T. Yoon, K.-W. Park, S.-H. Park, I.-M. Kim, and B.-J. Park, "Aviation communication technique: implementation of the disaster monitering system with PLC/CDMA environments", The Journal of Korea Navigation Institute, Vol. 14, pp. 826-827, 2010.
  3. Y.-I. Jo, "Latest artificial intelligence", Hakmunsa, Seoul, pp. 293-323, 1999.
  4. S. Haykin, "Netral network: A comprehensive foundation", Prentice-hall International, New Jersey, pp. 161-172, 1999.
  5. M. Luck and M. D'inverno, "A conceptual framework for agent definition and development", The Computer Journal, Vol. 44, pp.1-20, 2001. https://doi.org/10.1093/comjnl/44.1.1