通信工程

基于车载数据库协同触发的高铁LTE-R切换算法

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  • 中南大学 物理与电子学院, 长沙 410083

收稿日期: 2017-12-13

  修回日期: 2018-04-12

  网络出版日期: 2018-12-31

基金资助

国家重点研发计划项目基金(No.2017YFA0204600);国家自然科学基金(No.NSFC61404002);湖南省科技计划项目基金(No.2015JC3041)资助

Vehicle-Mounted Database Based Switching Algorithm by Using Cooperative Trigger Mechanism for LTE-R of High-Speed Train

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  • School of Physical Science and Electronics, Central South University, Changsha 410083, China

Received date: 2017-12-13

  Revised date: 2018-04-12

  Online published: 2018-12-31

摘要

进一步提升高铁的信道切换性能具有重要的现实意义.基于信号功率和车载数据库协同触发机制提出了应用于高速铁路下一代通信专网LTE-R(long term evolution forrailway)的新型切换算法,将数据库基站信息和信号功率实测信息的比对结果作为切换触发的判据,能实现中断快速重连和切换锁定等功能.仿真结果表明,该新型切换算法能有效提升LTE-R的信道切换性能,在重叠区关键位置点的触发效率比传统算法提升43.7%,切换成功率达到了99.5%.该协同触发切换算法在LTE-R高铁通信专网上具有广阔的应用前景.

本文引用格式

陈攀, 胡照文, 廖聪维, 罗衡, 邓联文 . 基于车载数据库协同触发的高铁LTE-R切换算法[J]. 应用科学学报, 2018 , 36(6) : 925 -935 . DOI: 10.3969/j.issn.0255-8297.2018.06.005

Abstract

It is of signifcant importance to further improve the channel switching performances of high-speed railway. In this paper, a new long term evolution for railway (LTE-R) switch algorithm for high-speed train is proposed based on the vehicle-mounted database and the signal power measurement. The comparison result between the information of eNodeB stations(BS)along the railway and the real-time measurement is used for switching trigger judgment of database. The simulation result shows that the proposed algorithm can achieve the fast reconnection after interruption and switch locking. The switching trigger efciency ratio of the proposed algorithm is 43.7% higher than that of the conventional algorithm on several key points of overlap region. And the handover success rate reaches as high as 0.995. The cooperative triggering algorithm is promising for extensive applications in the high-speed railway network LTE-R.

参考文献

[1] He R, Ai B, Wang G, Ke G, Zhang D Z. High-speed railway communications:from GSM-R to LTE-R[J]. IEEE Vehicular Technology Magazine, 2016, 11(3):49-58.
[2] 方欢,陆阳,葛方振,黄镇谨. 基于Petri网的复杂空竭休假排队系统的性能评价[J]. 应用科学学报,2012, 30(4):379-386. Fang H, Lu Y, Ge F Z, Huang Z J. Performance evaluation for complex queuing system under exhaustive-service policies based on Petri nets[J]. Journal of Applied Sciences, 2012, 30(4):379-386. (in Chinese)
[3] 周祥娟,方旭明,吴帆,张瑞强. 一种高移动场景下基于CoMP的切换方案及性能分析[J]. 铁道学报,2013, 35(4):57-65. Zhou X J, Fang X M, Wu F, Zhang R Q. Analysis on performance of CoMP-based optimized handover scheme for high-speed railways[J]. Journal of the China Railway Society, 2013, 28(2):35(4):57-65. (in Chinese)
[4] 米根锁,马硕梅. 基于速度触发的提前切换算法在LTE-R中的应用研究[J]. 电子与信息学报,2015, 37(12):2852-2857. Mi G S, Ma S M. Advance trigger handover algorithm based on the speed in LTE-R[J]. Journal of Electronics and Information Technology, 2015, 37(12):2852-2857. (in Chinese)
[5] Ahmed E, Badran E F, Rizk M R M. A power-distance based handover triggering algorithm for LTE-R using WINNERⅡ-D2a channel model[C]//22nd Asia-Pacifc Conference on Communications (APCC), Yogyakarta, 2016:167-173.
[6] Zheng Y. Integration of satellite positioning and a track database for safety-critical railway control systems[D]. London:University College London, 2008.
[7] 贺臻桢. 基于LTE-R的高速移动宽带通信系统切换技术研究[D]. 长沙:中南大学,2013.
[8] 马硕梅. 高速铁路LTE-R同频切换算法研究[D]. 兰州:兰州交通大学,2016.
[9] Wen S, Wu H, Shi H. A novel handover mechanism based on train index for GSM-R network[C]//International Symposium on Microwave, Antenna, Propagation, and Emc Technologies for Wireless Communications. IEEE, 2012:671-674.
[10] 曾令峰,李汉兵. 高速列车车载直放站方案研究[J]. 光通信研究,2012(1):60-63. Zeng L F, Li H B. Journal of electronics and information technology[J]. Study on Optical Communication, 2012(1):60-63. (in Chinese)
[11] Jouili I, Hassine K, Frikha M. A network coding based solution to minimize packet loss during handover in LTE-A systems:highway scenario[C]//International Wireless Communications and Mobile Computing Conference, 2016:458-462.
[12] Chen W, Ahmad I, Chang K H. Co-channel interference management using eICIC/FeICIC with coordinated scheduling for the coexistence of PS-LTE and LTE-R networks[J]. Eurasip Journal on Wireless Communications & Networking, 2017(1):34.
[13] Kyösti P, Meinilä J, Hentilä L, et al. IST-4-027756 WINNER Ⅱ channel models[S]. Helsinki:Wireless World Initiative, 2007.
[14] 熊磊,钟章队,艾渤,朱明伟. 高速铁路移动通信系统WINNER信道性能分析[J]. 铁道学报,2012, 34(3):44-49. Xiong L, Zhong Z D, Ai B, Zhu M W. Analysis on performance of WINNER channels of mobile communication system of high-speed railway[J]. Journal of the China Railway Society, 2012, 34(3):44-49. (in Chinese)
[15] Cheng M, Fang X, Luo W. Beamforming and positioning-assisted handover scheme for longterm evolution system in high-speed railway[J]. IET Communications, 2013, 6(15):2335-2340.
[16] 邱佳慧. 高铁场景下无线信道特性与系统性能优化的研究[D]. 北京:北京交通大学,2015.
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