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基于可拓模糊层次分析的快速小区选择算法

章辉 许晓东 陶小峰 李静雅 张平

章辉, 许晓东, 陶小峰, 李静雅, 张平. 基于可拓模糊层次分析的快速小区选择算法[J]. 电子与信息学报, 2009, 31(11): 2697-2702. doi: 10.3724/SP.J.1146.2008.01481
引用本文: 章辉, 许晓东, 陶小峰, 李静雅, 张平. 基于可拓模糊层次分析的快速小区选择算法[J]. 电子与信息学报, 2009, 31(11): 2697-2702. doi: 10.3724/SP.J.1146.2008.01481
Zhang Hui, Xu Xiao-dong, Tao Xiao-feng, Li Jing-ya, Zhang Ping. Fast Cell Selection Algorithm Based on Extension Theory and Fuzzy AHP[J]. Journal of Electronics & Information Technology, 2009, 31(11): 2697-2702. doi: 10.3724/SP.J.1146.2008.01481
Citation: Zhang Hui, Xu Xiao-dong, Tao Xiao-feng, Li Jing-ya, Zhang Ping. Fast Cell Selection Algorithm Based on Extension Theory and Fuzzy AHP[J]. Journal of Electronics & Information Technology, 2009, 31(11): 2697-2702. doi: 10.3724/SP.J.1146.2008.01481

基于可拓模糊层次分析的快速小区选择算法

doi: 10.3724/SP.J.1146.2008.01481
基金项目: 

国家863计划项目(2006AA01Z283),中瑞合作项目(2008DFA12110),中澳合作项目(20080385),国家自然科学基金(60872048)和北京市科委项目资助课题

Fast Cell Selection Algorithm Based on Extension Theory and Fuzzy AHP

  • 摘要: 针对快速小区选择中评判准则过于单一,缺乏灵活性和公平性的问题,该文提出了一种新型快速小区选择算法。该算法借助可拓理论,构造了一种小区性能QoE参数评价的映射表,并将实际参数映射到对应的标度区间,然后计算待评小区的实际分析值。在此基础之上,采用模糊层次分析的方法构造出判断矩阵,并检验其一致性。最后根据权重向量大小对计算出的各小区总效益函数值排序,找到最优的快速小区选择策略。仿真分析表明,小区性能因子的权重影响到总效益函数值的大小。与现有的快速小区选择算法相比,该算法在增加一定算法复杂度的情况下,实现了小区性能参数评判的全面性,降低了用户的阻塞率,提高了用户的吞吐量。
  • Viterbi A J. CDMA: Principles of Spread SpectrumCommunication. Massachusetts: Addison Wesley Publishing,1995.[2]3GPP TSGR1-11. Power Control for Fast Cell Selection inHSDPA, 2000.3GPP TSGR-07. Details of High Speed Downlink PacketAccess, 2000.3GPP TSGR1-17.Downlink and Uplink Channel Structuresfor HSDPA, 2000.[3]单文浩, 范平志. 移动高速数据包通信的模糊快速小区选择.电子学报, 2004, 32(3): 485-488.Shan Wen-hao and Fan Ping-zhi. Fuzzy fast cell selection inmobile high rate packet data communication, ActaElectronica Sinica, 2004, 32(3): 485-488.[4]Zhang Ying-jun and Letaief K. Multiuser adaptive subcarrier-and-bit allocation with adaptive cell selection for OFDMsystems[J].IEEE Transactions on Wireless Communications.2004, 3(5):1566-1575[5]梁立涛, 纪阳, 张平. 基于模糊层次分析法的异构系统网络选择算法. 北京邮电大学学报, 2007, 30(2): 71-75.Liang Li-tao, Ji Yang, and Zhang Ping. A network selectionalgorithm based on fuzzy analytic hierarchy process inheterogeneous systems. Journal of Beijing University of Postsand Telecommunications, 2007, 30(2): 71-75.[6]Song Q and Jamalipour A. Network selection in an integratedwireless LAN and UMTS environment using mathematicalmodeling and computing techniques. IEEE WirelessCommunications, 2005, 12(3): 42-48.[7]李振福, 杨忠振. 模糊可拓层次分析法研究. 上海海事大学学报, 2006, 27(3): 71-75.Li Zhen-fu and Yang Zhong-zhen. Study on extension fuzzyAHP method. Journal of Shanghai Maritime University, 2006,27(3): 71-75.[8]Ferrus R, Olmos J, and Galeana H. Evaluation of a cellselection framework for radio access networks consideringbackhaul resource limitations. IEEE PIMRC, Athens, 2007:1-5.[9]Xu Xiao-dong and Tao Xiao-feng, et al.. Fast cell groupselection scheme for improving downlink cell edgeperformance. IEEE ICCCAS, Chengdu, 2006, (2): 1382-1386.[10]Morimo A, Abeta S, and Sawahashi M. Cell selection basedon shadowing variation for forward link broadband OFCDMpacket wireless access. IEEE VTC, Vancouver, 2002, 4:2071-2075.[11]Bakmaz B, Bojkovic Z, and Bakmaz M. Network selectionalgorithm for heterogeneous wireless environment. IEEEPIMRC, Athens, 2007: 1-4.[12]蔡文等. 可拓工程方法. 北京: 科学出版社, 1997: 4-8.Cai Wen, et al.. Extension Engineering Approach. Beijing:Science Press, 1997: 4-8.[13]Saaty A L. The Analytic Hierarchy Process. Pittsburgh:McGraw Hill, 1980.[14]3GPP TS 23.107. QoS Concept and Architecture, 2001.
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出版历程
  • 收稿日期:  2008-11-12
  • 修回日期:  2009-04-09
  • 刊出日期:  2009-11-19

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