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Development of Standing and Moving Human Body Sensing Module Using a Chopper of Shutter Method

셔터방식의 쵸퍼를 이용한 정지 및 이동인체 감지 모듈 개발

  • Cha, Hyeong-Woo (Department of Electronics Eng., Cheongju University) ;
  • Lee, Won-Ho (Department of Electronics Eng., Cheongju University)
  • Received : 2015.11.23
  • Accepted : 2016.01.20
  • Published : 2016.02.25

Abstract

Sensing module of standing and moving human body using shutter method was developed. The module consists of Fresnel lens, pyroelectric infrared (PIR) sensor, interface circuit of the PIR, micro control unit(MCU), and alarm light emitting diode(LED). The principle for standing human body is chopping the thermal of human body using camera shutter. The human sensing signal in MCU by algorithm of interrupt function is detected. By unifying an apparatus and print circuit board(PCB), the developed module can be replaced as commercial moving human body detector. Experiment results show that sensing distance is about 7.0m and sensing angles is about $110^{\circ}$ at room temperature. In these condition, sending ratio was 100% and the power dissipation of the module was 100mW.

셔터방식의 쵸퍼를 이용한 정지 및 이동인체 감지 모듈을 개발하였다. 감지 모듈은 프레넬 렌즈(Fresnel lens), 초전형적외선(pyroelectric infrared : PIR) 센서, 센서 인터페이스 회로, MCU(micro control unit) 그리고 경보 LED(light emitting diode)로 구성된다. 정지 인체 감지 원리는 PIR 센서에서 나오는 신호를 카메라 셔터를 이용하여 인체의 열을 쵸핑하여 감지하는 방식이다. MCU에서 인터럽트 함수를 제어하는 알고리즘을 통해 정지 및 이동 인체 신호를 감지하게 하였다. 개발한 감지 모듈은 기구부와 PCB(print circuit board)를 일체화함으로써 종래의 상용화되고 있는 이동인체 감지 모듈을 대체 가능하다. 실내 상온에서의 실험 결과, 감지거리는 약 7.0m, 감지각도는 $110^{\circ}$로 측정되었다. 이런 조건에서 감지률은 100%이였고 모듈의 소비 전력는 100mW이였다.

Keywords

References

  1. Josepth J. CARR, Sensors and circuits-sensor, transducers, supporting circuits for electronic instrumentation, measurement, and control, PTR, 1993.
  2. S.-W. Nam, etc., "The technical summary of PIR sensor summer", Special edition of the KIEE, p.40-46, Feb. 1992
  3. Masski Ando, "Detection of human position and movement by IR sensor array", Technical digest of the 12th Sensor symposium 1994
  4. C. F. Tsai, M. S. Young, "Pyroelectric infrared sensor-based thermometer for monitoring indoor objects", Review of scientific instruments, Vol 74, No. 12, Dec. 2003
  5. J.-P. Lee, J.-Y. Lim, I.-S. Lee, and P.-S. Ji, "Development of intelligent power management system for electric energy saving", Proc. of the KIEE, pp. 85-86, July, 2006
  6. K.-H. Kim, B.-W. Jang, B.-C. Won, J.-H. Han, J.-E. Kim, and Y.-O. Han, "The development of motion detector for lighting system with crime and disaster prevention functions", Proc. of the KIECS, vol. 3, no. 1, pp. 331-334, July, 2006
  7. H.-S. Yang, S.-C. Kim, J.-H. Kim, W.-D. Cho, "Implementation of device control system for improving user facility and power saving using PIR sensor", Proc. of the IEEK, pp. 770-771, June, 2009
  8. J.-Y. Lee, B.-R. Son, Kim and J.-G. Kim, "Fire rescue system : using motion sensor", Proc. of symposium of the KICIS, pp. 1007-1008, June, 2009
  9. K.-H. Lee and J.-H. Cha, "Presence sensor by using Ultrasonic sensor and Thermopile sensor", Proc. of the KSOPE, pp. 699-700, June, 2010
  10. J.-Y. Kim, J.-W. Choi, and K.-O Choi, "A Study for the improvement on the performance of the PIR sensor using the software", Proc. of the IEEK, pp. 1398-1401, June, 2011
  11. H.-W. Cha, Y.-S. Kim, S.-H. Park, P.-S. Hyun, S.-H. Yoon, "Standing and moving human detector system using PIR sensor", Proc. of the 6th KIIT Summer Converence, vol. I, pp. 57-62, Jule 2007.
  12. H-W. Cha, W-H. Lee, H-S. Yun, "Development of standing and moving human body sensing module using shutter method," IEIE summer conference, vol. 37, no. 1, pp. 1005-1008, June 2014.
  13. Datasheet of BD9251FV, ROHM
  14. Datasheet of MC97F1104, ABOV Semiconductor.
  15. http://www.diypro.co.kr/bbs/board.php?bo_table
  16. http://www.nicera.co.jp/pro/ip/ip-01.html#ip01