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Distance Measurement by Automatic Peak Detection for Indoor Positioning Using Spread Spectrum Ultrasonic Waves

  • Received : 2014.12.29
  • Accepted : 2015.03.26
  • Published : 2015.04.30

Abstract

In conducting indoor positioning by code division multiple access using spread spectrum ultrasonic waves, it is required to detect signals under the influence of near-far problem occurred by difference on signal power, caused by distance between transmitter and receiver. For discussing robustness to the problem, we verified measuring accuracy on distance from an experiment on a real space with a hardware device where our proposed method is mounted. The proposed method performs automatic signal detection by setting threshold level dynamically. As an experimental result, measurable distance were improved by the proposed method, and measurement errors were up to 50mm in distances from 1000mm to 6000mm; therefore, enough accuracy to realize self-localization or navigation for autonomous mobile robot or human was obtained.

Keywords

References

  1. J. T. C. Tan and T. Inamura, 2012, "SIGVerse - A Cloud Computing Architecture Simulation Platform for Social Human-Robot Interaction", International Conference on Robotics and Automation, pp. 1310-1315.
  2. J. E. Lee and S. G Lee, 2010,"Indoor initial positioning using single clock pseudolite system", International Conference on Information and Communication Technology Convergence (ICTC), pp. 575-578.
  3. D. Manandhar and H. Torimoto, 2011, "Development of IMES Installation, Setup and Management System", Proceedings of the 24th International Technical Meeting of The Satellite Division of the Institute of Navigation, pp. 1507-1513.
  4. A. M. Aly Omar and A. S. Omar, 2005, "Spread Spectrum Ultrasonic Positioning System", The 2nd Workshop on Positioning, Navigation and Communication (WPNC'05) & 1st Ultra-Wideband Expert Talk (UET'05), pp. 109-114.
  5. M. Hazas and A. Ward, 2006, "Broadband Ultrasonic Location Systems for Improved Indoor Positioning", IEEE Transactions on Mobile Computing, pp. 536-547.
  6. A. Suzuki, T. Iyota, and K. Watanabe, 2011, "A Performance Comparison of Measurement Distance between OOK and SS Modulation for Indoor Positioning Using Ultrasonic Transducers", IEEE Sensors, October 2011, Open Poster.
  7. A. Suzuki, T. Iyota, and K. Watanabe, 2012, "Real-Time Distance Measurement for Indoor Positioning System Using Spread Spectrum Ultrasonic Waves", Ultrasonic Waves, University Campus STeP Ri Slavka Krautzeka 83/A 51000, Rijeka, Croatia: INTECH, pp. 173-188.
  8. A. Suzuki et al., 2009, "Measurement Accuracy on Indoor Positioning System Using Spread Spectrum Ultrasonic Waves", 4th International Conference on Autonomous Robots and Agents, pp. 294-297.
  9. A. Yamane, I. Taketoshi, C. Y. Woon, K. Yuzuru, and W. Kazuhiro, "A Study on Propagation Characteristics of Spread Spectrum Sound Waves using a Band-limited Ultrasonic Transducer", Journal of Robotics and Mechatronics, pp. 333-341, 2004.
  10. K. Kumakura, A. Suzuki, and T. Iyota, 2012, "Indoor Positioning for Moving Objects Using a Hardware Device with Spread Spectrum Ultrasonic Waves", International Conference on Indoor Positioning and Indoor Navigation (IPIN 2012), pp. 1-6.
  11. Y. Itagaki, A. Suzuki, and T. Iyota, 2012, "Indoor Positioning for Moving Objects Using a Hardware Device with Spread Spectrum Ultrasonic Waves", International Conference on Indoor Positioning and Indoor Navigation (IPIN 2012), pp. 1-6.