인지 무선을 이용한 차간 통신 이슈 및 연구동향

  • Published : 2013.09.30

Abstract

최근 차량 네트워크(VANET)는 차량 및 도로 안전에 관한 정보와 다양한 인포테인먼트 서비스 증가로, 기존 차량 통신에 고정적으로 할당된 주파수로는 요구되어지는 주파수 수요량을 충족하지 못할 것으로 예측된다. 이에 따라, 인지 무선(CR) 기술을 VANET 환경의 특징에 적합하게 적용함으로써, 동적인 주파수 사용으로 주파수의 활용도를 향상시키기 위한 연구가 큰 관심을 받고 있다. 본 고에서는 인지 무선을 이용한 차간 통신 이슈 및 연구 동향을 소개한다.

Keywords

References

  1. 허성만, 최준호, 유상조, "정책 기반(Policy-based) 인지 무선 네트워크 관리 기술", 한국통신학회지, 29(2), pp 58-65, 2013년 1월.
  2. "IEEE Trial-use standard for wireless access in vehicular environments(WAVE) - multi-channel operation", IEEE Std 1609, pp. c1-74, Apr. 2010.
  3. S. Zeadally, R. Hunt, Y.-S. Chen, A. Irwin, and A. Hassan, "Vehicular ad hoc networks(VANETS): status, results, and challenges", Telecommunication Systems (Online First), pp. 1-25, Dec. 2010.
  4. H. T. Cheng, H. Shan, and W. Zhuang, "Infotainment and road safety service support in vehicular networking: From a communication perspective", Mechanical System and Signal Processing, vol. 25, no. 6, pp. 2020-2038, Aug. 2011. https://doi.org/10.1016/j.ymssp.2010.11.009
  5. M. D. Felice, R. Doost-Mohammady, K. R. Chowdhury, and L. Bononi. "Smart radios for smart vehicles: cognitive vehicular networks", IEEE Vehicular Technology Magazine - Special Issue on Applications of Cognitive Radio Networks, vol. 7, no. 2, pp. 26-33, Jun. 2012.
  6. S. Pagadarai, A. Wyglinski, and R. Vuyyuru, "Characterization of vacant UHF TV channels for vehicular dynamic spectrum access", Proc. IEEE Vehicular Networking conference(IEEE VNC), pp. 1-8. Oct. 2009.
  7. D. D. Ariananda, M. K. Lakshmanan, and H. Nikkar, "A survey on spectrum sensing techniques for cognitive radio", Proc. 2nd Int. Workshop Cognitive Radio and Advanced Spectrum Management(CogART), pp. 74-79, May. 2009.
  8. M. D. Felice, K. R. Chowdhury and L. Bononi, "Analyzing the potential of cooperative cognitive radio technology on inter-vehicle communication", Proc. IFIP Wireless days(WD), pp. 1-6, Oct. 2010.
  9. M. D. Felice, K. R. Chowdhury and L. Bononi, "Cooperative spectrum management in cognitive vehicular Ad hoc networks", Proc. IEEE Vehicular Networking conference(IEEE VNC), pp. 47-54, Nov. 2011.
  10. X. Wang, P. H. Ho, "A novel sensing coordination framework for CR-VANETs", IEEE Vehicular Technology, vol. 59, no. 4, pp. 1936-1948, May. 2010. https://doi.org/10.1109/TVT.2009.2037641
  11. J. H. Chu, K. T. Feng, C. N. Chuah, and C. F. Liu, "Cognitive radio enabled multi-channel access for vehicular communications", Proc. IEEE 72nd Vehicular Technology Conference(VTC), pp. 1-5, Sep. 2010.
  12. Jae-Han Lim et al, "Interplay between TVWS and DSRC: Optimal strategy for QoS of safety message dissemination in VANET", Proc. Computing, Networking and Communications(ICNC), pp. 1156-1161, Jan. 2013.
  13. K. Fawaz, A. Ghandour, M. Olleik, and H. Artail, "Improving reliability of safety applications in vehicle Ad hoc networks through the implementation of a cognitive network", Proc. IEEE Telecomunications(IEEE ITC), pp. 798-805, Apr. 2010.
  14. A. J. Ghandour, K. Fawaz, and H. Artail, "Data delivery guarantees in congested vehicular ad hoc networks using cognitive networks", Proc. IEEE Wireless Communications and Mobile Computing Conference(IEEE IWCMC), pp. 871-876, Jul. 2011.
  15. C. Borgiattino et al, "Experience with UHF bands for content downloading in vehicular networks", Proc. IEEE Wireless Commnunications and Networking Conference Workshops(IEEE WCNCW), pp. 333-337, Apr. 2012.
  16. G. Marfia, M. Roccetti, A. Amoroso, M. Gerla, G. Pau, and J. H. Lim, "Cognitive cars: Constructing a cognitive playground for VANET research testbeds", Proc. ACM Conference on Cognitive Radio and Advanced Spectrum Management(CogART 2011), Oct. 2011.