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Hybrid Algorithmic Framework Using IMU and WPS for Smart Phone Positioning Systems

스마트폰 IMU와 WPS를 결합한 복합 측위 방법론

  • Received : 2013.03.06
  • Accepted : 2013.07.29
  • Published : 2013.08.30

Abstract

The drastic growth of mobile communication and spreading of smart phone make the significant attention on Location Based Service. The one of most important things for vitalization of LBS is the accurate estimating position for mobile object. Focusing on IMU deployed in smart phone, we develop a hybrid positioning estimation framework with a combination of WPS. The developed approaches can strengthen the advantages of independent indoor applicability of IMU. The estimation of IMU is efficiently compensated by radio fingerprint based Wi-Fi Positioning System. We put a focus especially on the hybrid algorithmic framework. Compared on the existing approaches of WPS or IMU, we achieve the comparable higher performance on both of average error of estimation and deviation of errors. Furthermore test-bed based on smart phone platform is practically developed and all data have been harvested from the actual measurement of test indoor area. This can approve the practical usefulness of proposed framework.

무선인터넷과 이동통신 기술의 발달 및 스마트폰의 급속한 확산으로 인해 사용자의 현재 및 과거의 위치 정보를 사용하여 다양한 부가정보를 제공하는 위치기반 서비스에 대한 관심이 급증하고 있다. 위치기반 서비스의 본격적인 활성화를 위해서는 정확한 측위가 기본이 된다. GPS (Global Positioning System)과 WPS (Wi-Fi Positioing System)가 상용화 되면서 측위 기술에 일대 혁신을 가져왔으나 실내환경에서 많은 제약을 가졌다. 이에 관성센서(IMU: Inertia Motion Unit)를 사용한 네비게이션 (Navigation)기술을 실내환경에서 응용하려는 시도가 정밀 측위의 관점에서 논의되고, 관성센서의 장착이 스마트폰에 일상화 되면서 실내 정밀 측위 확산의 시초를 갖게 되었다. 본 논문에서는 IMU와 WPS를 결합하여 각각의 단점을 극복하고 측위 품질을 혁신적으로 향상 시킬 수 있는 알고리즘 프레임워크를 제안한다. 본 연구를 위해 스마트폰에서 구현되는 측위 테스트 프로그램을 구현하고 이를 적용할 실질적인 실내외 테스트베드를 구성하여 활용하였으며 이로서 대규모로 확장 적용할 수 있는 기반을 구성했다는 면에서 충분한 의미를 지닌다.

Keywords

References

  1. Yutaka Masumoto, "Global positioning system," US Patent 5210540A, June 1992.
  2. D. G. Steer, L. Strawczynski, and J. Michael Watters, "Combining GPS with TOA/TDOA of cellular signals to locate terminal," US Patent 5982324A, May 1998.
  3. F. Alizadeh-Shabdiz and K. Pahlavan, "Estimation of position using WLAN access point radio propagation characteristics in a WLAN positioning system," CA Patent 2651853, May 2007.
  4. J. del Prado Pavon and S. Choi, "Link adaptation strategy for IEEE 802.11 WLAN via received signal strength measurement," in Proc. IEEE Int. Conf. Commun. (ICC '03), vol. 2, pp. 1108-1113, Anchorage, U.S.A., May 2003.
  5. Skyhook Wireless, Skyhook Wireless technology used in revolutionary iPhone and iPod touch, Retrieved Jan., 16, 2008, from http://www.skyhookwireless.com/press/skyhoo kapple.php.
  6. F. Alizadeh-Shabdiz, R. K. Jones, E. J. Morgan, and M. G. Shean, "Location beacon database and server, method of building location beacon database, and location based service using same," Patent WO2006110181, Oct. 2004.
  7. B. Li, J. Salter, A. G. Dempster, and C. Rizos, "Indoor positioning techniques based on Wireless LAN," in Proc. 2006 Auswireless Conf., pp. 1-7, Sydney, Mar. 2007.
  8. B. Li, I. J. Quader, and A. G. Dempster, "On outdoor positioning with Wi-Fi," J. GPS, vol. 7, no. 1, pp. 18-26, June 2008. https://doi.org/10.5081/jgps.7.1.18
  9. Y. Gu, A. Lo, and I. Niemegeers, "A survey of indoor positioning systems for wireless personal networks," IEEE Commun. Surveys Tutorials, vol. 11, no. 1, pp. 13-32, Mar. 2009. https://doi.org/10.1109/SURV.2009.090103
  10. G. Turetzky, "Indoor positioning with SiRFusion for Next Generation E-911," FCC workshop, Oct. 2012.
  11. S. Y. Cho, S. H. Shin, and C. K. Park, "MEMS Sensor based Context-aware Technology of Walking Dynamics and Integrated Navigation for Seamless Pedestrian Navigation," Telecommun. Review (SK telecom), vol. 19, no. 1, pp. 148-164, Feb. 2009.
  12. H. Wang, H. Lenz, A. Szabo, J. Bamberger, and U. D. Hanebeck, "WLAN-based pedestrian tracking using particle filters and low-cost MEMS sensors," in Proc. 4th Workshop Positioning Navigation Commun. (WPNC '07), pp. 1-7, Hannover, Germany, Mar. 2007.
  13. K. Frank, B. Krach, N. Catterall, and P. Robertson, "Development and evaluation of a combined WLAN and inertial indoor pedestrian positioning system." in Proc. ION GNSS, pp. 22-25, Savannah, U.S.A., Sep. 2009.