DOI QR코드

DOI QR Code

Design and Implementation of a Microwave Motion Detector with Low Power Consumption

  • Sohn, Surg-Won (Div. of Computer and Information Engineering, Hoseo University)
  • Received : 2015.06.29
  • Accepted : 2015.07.20
  • Published : 2015.07.31

Abstract

In this paper, we propose a design of microwave motion detector using X-band doppler radar sensor to minimize the power consumption. To minimize the power consumption and implement battery operated system, pulse input with 2 KHz, 4% duty cycle is exerted on the doppler radar sensor. In order to simplify the process of working with ATmega2560 microcontroller unit, Arduino compatible board is designed and implemented. Arduino is open source hardware and many library software is published as open source tools. Smartphone app is also proposed and designed as a real-time user interface of the motion detector. The SQLite database on the Android mobile operating system is used for recording raw data of motion detection for post-processing job, such as fast Fourier transform (FFT). Bluetooth interface module is implemented on the motion detection board as a wireless communication interface to the smartphone. The speed of human movement is identified by post-processing FFT.

Keywords

References

  1. Digital Security Controls, http://www.dsc.com
  2. Bumblebee Radar, http://samraksh.com
  3. M. Otero, "Application of a continuous wave radar for human gait recognition," Defense and Security. International Society for Optics and Photonics, 2005.
  4. V. Skvortsov, K.M. Lee, and S.E. Yang, "Inexpensive radar-based surveillance: Experimental study," In Emerging Technologies for a Smarter World (CEWIT), 2012 9th International Conference & Expo on, pp. 1-6. IEEE, 2012.
  5. QM RDKIT Radar, http://www.quonsetmicrowave.com
  6. Parallax PIR Sensor datasheet, https://www.parallax.com/sites/default/files/downloads/555-28027-PIR-Sensor-Prodcut-Doc-v2.2.pdf
  7. Microwave motion sensor module HB100 datasheet, http://www.limpkin.fr/public/HB100/HB100_Microwave_Sensor_Module_Datasheet.pdf
  8. W.S. Kim, Y.M. Jung and G.K. Kim, "Integrated Transceiver Module Development at Ka-Band," Journal of The Korea Society of Computer and Information, Vol. 11, No. 5, pp. 267-272, Nov. 2006.
  9. L. Kejia, R. Wu, X. Zhenghui and L. Weiming, "Design of X band low phase noise dielectric resonator oscillator," Microwave Technology & Computational Electromagnetics (ICMTCE), 2013 IEEE International Conference on, pp.188-192, Aug. 2013.
  10. Arduino, http://www.arduino.cc
  11. TeeChart Java for Android, http://www.steema.com/teechart/mobile
  12. J.H. Lee and K.H. Kim, "A Study of Biosignal Analysis System for Sensibility Evaluation," Journal of The Korea Society of Computer and Information, Vol. 15, No. 12, pp. 19-26, Dec. 2010. https://doi.org/10.9708/jksci.2010.15.12.019
  13. Sigview software, http://www.sigview.com

Cited by

  1. Duty Cycle Research for Energy Consumption Efficiency under the IoT Wireless Environment vol.22, pp.4, 2018, https://doi.org/10.7471/ikeee.2018.22.4.1210