DOI QR코드

DOI QR Code

AdaBoost 기법을 이용한 차량 이동성 관리 방안

Vehicle Mobility Management Scheme Using AdaBoost Algorithm

  • 한상혁 (광운대학교 제어계측공학과) ;
  • 이혁준 (광운대학교 제어계측공학과) ;
  • 최용훈 (광운대학교 제어계측공학과)
  • 투고 : 2013.12.11
  • 심사 : 2014.01.13
  • 발행 : 2014.02.28

초록

차량과 같이 넓은 범위를 이동하는 환경에서 무선 인터넷 서비스를 사용할 때, 불필요하게 발생하는 핸드오버는 서비스 품질 저하의 주된 요인이다. 본 논문에서는 차량이 일정한 이동패턴을 갖고 있을 때, 핸드오버 빈도를 줄일 수 있는 방안을 제시한다. 차량의 이동 패턴을 Discrete-Time Markov Chain (DTMC)으로 모델링하고, AdaBoost 기법을 이용하여, 각 셀 내의 체류시간과 평균 신호의 세기를 저장하고 분석하여 핸드오버 시, 적합한 목적지 셀을 정하도록 한다. 제안한 방안의 검증을 위해, 서울 시내버스 노선들을 기반으로 성능 평가를 수행하였으며, 결과로 기존의 핸드오버 기법보다 핸드오버의 빈도를 줄이며, 평균 처리율 (throughput)은 비슷한 레벨로 유지할 수 있었다.

Redundant handovers cause degraded quality of service to passengers in vehicle. This paper proposes a handover scheme suitable for users traveling in vehicles, which enables continuous learning of the handover process using a discrete-time Markov chain (DTMC). Through AdaBoost machine learning algorithm, the proposed handover scheme avoids unnecessary handover trials when a short dwell time in a target cell is expected or when the target cell is an intermediate cell through which the vehicle quickly passes. Simulation results show that the proposed scheme reduces the number of handover occurrences and maintains adequate throughput.

키워드

참고문헌

  1. Emmelmann Marc., "Influence of velocity on the handover delay associated with a radio signal measurement-based handover decision," In Proceedings of the IEEE vehicular technology conference, 2005, September 2005. pp.2282-6
  2. Kim Tae-Hyong, Yang Qiping, Lee Jae-Hyoung, Park Soon-Gi, Shin Yeon-Seung, "A mobility management technique with simple handover prediction for 3G LTE systems," In Proceedings of the IEEE vehicular technology conference, 2007, September 2007. pp.259-63.
  3. Choi Yong-Hoon, Park Jaesung, Chung Young-uk, Lee Hyukjoon, "Cross-layer handover optimization using linear regression model," In Proceedings of the ICOIN 2008, January 2008. pp.1-4.
  4. Kim Sung Kyung, Kang Chung Gu, Kim Kyung Soo, "An adaptive handover decision algorithm based on the estimating mobility from signal strength measurements," In Proceedings of the IEEE vehicular technology conference, 2004, September 2004. pp.1004-8.
  5. Mohanty S, Akyildiz I, "A cross-layer (layer 2 + 3) handoff management protocol for next-generation wireless systems," IEEE Trans Mobile Comput 2006;5(10):1347-60. https://doi.org/10.1109/TMC.2006.142
  6. Yan X, Mani N, Cekercioglu Y, "A traveling distance prediction based method to minimize unnecessary handovers from cellular networks to WLANs," IEEE Commun Lett 2008;12(1):14-6. https://doi.org/10.1109/LCOMM.2008.071430
  7. Chien SF, Liu Huaiyu, Low Andy, Maciocco Christian, Ho YL, "Smart predictive trigger for effective handover in wireless networks," In Proceedings of the IEEE ICC '08, May 2008. pp.2175-81.
  8. Akyildiz I, Wang W, "The predictive user mobility profile framework for wireless multimedia networks," IEEE/ACM Trans Network 2004;12(6):1021-35. https://doi.org/10.1109/TNET.2004.838604
  9. Liu George Y, Maguire Jr., Gerald Q, "A predictive mobility management algorithm for wireless mobile computing and communications," In Proceedings of the IEEE universal personal communications, November 1995. pp.268-72.
  10. Natalizio Enrico, Aloi Gianluca, "Exploiting recurrent paths of vehicular users in a third generation cellular system urban scenario," In Proceedings of the IEEE PIMRC'06, September 2006. pp.1-5