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多业务LEO卫星网络中最优呼叫允许控制及切换管理策略

丁丁 马东堂 魏急波 王国玉

丁丁, 马东堂, 魏急波, 王国玉. 多业务LEO卫星网络中最优呼叫允许控制及切换管理策略[J]. 电子与信息学报, 2010, 32(7): 1559-1563. doi: 10.3724/SP.J.1146.2009.00453
引用本文: 丁丁, 马东堂, 魏急波, 王国玉. 多业务LEO卫星网络中最优呼叫允许控制及切换管理策略[J]. 电子与信息学报, 2010, 32(7): 1559-1563. doi: 10.3724/SP.J.1146.2009.00453
Ding Ding, Ma Dong-tang, Wei Ji-bo, Wang Guo-yu. Optimal Call Admission Control and Handover Management Scheme in Multiservice LEO Satellite Networks[J]. Journal of Electronics & Information Technology, 2010, 32(7): 1559-1563. doi: 10.3724/SP.J.1146.2009.00453
Citation: Ding Ding, Ma Dong-tang, Wei Ji-bo, Wang Guo-yu. Optimal Call Admission Control and Handover Management Scheme in Multiservice LEO Satellite Networks[J]. Journal of Electronics & Information Technology, 2010, 32(7): 1559-1563. doi: 10.3724/SP.J.1146.2009.00453

多业务LEO卫星网络中最优呼叫允许控制及切换管理策略

doi: 10.3724/SP.J.1146.2009.00453

Optimal Call Admission Control and Handover Management Scheme in Multiservice LEO Satellite Networks

  • 摘要: 该文针对多业务条件下的LEO(Low-Earth-Orbit)卫星网络,提出了一种新的基于最优多门限信道预留(OMTCR)的呼叫允许控制(CAC)及切换管理策略,建立了评价LEO卫星网络连接级QoS性能的理论分析模型框架。借鉴经济学收益函数的概念分别建立了无QoS约束和有QoS约束的系统收益目标优化模型,求解在给定系统参数和输入业务条件下OMTCR的最优门限参数矢量。仿真结果表明OMTCR能够在不同用户QoS要求和系统收益目标的多业务环境下获得比传统CS(Completely Sharing)策略及GC(Guard Channel)策略更好的性能。
  • Hong D and Rappaport S S. Traffic model and performanceanalysis for cellular mobile radio telephone systems withprioritized and nonprioritized handoff procedures[J].IEEETransactions on Vehicular Technology.1986, 35(3):77-92[2]Ding Ding, Ma Dong-tang, Li Min, and Wei Ji-bo. Analyticalapproach of QoS-guaranteed call admission control andhandover management scheme in multiservice LEO satellitenetworks. Accepted by the 60th International AstronauticalCongress, Daejeon, Republic of Korea, 2009.[3]Chowdhury P K, Atiquzzaman M, and Ivancic W. Handoverschemes in satellite networks: State-of-the-art and futureresearch directions[J].IEEE Communications Surveys Tutorials.2006, 8(4):2-14[4]Grard Maral, Joaquin Restrepo, and Enrico Del Re, et al..Performance analysis for a guaranteed handover service in anLEO constellation with satellite-fixed cell[J].IEEETransactions on Vehicular Technology.1998, 47(4):1200-1214[5]Riadh Dhaou, Andr ?-Luc Beylot, and Monique Becker.ATCR: An Adaptive Time-based Channel Reservationmechanism for LEO satellite fixed cell systems [C]. IEEE58th Vehicular Technology Conference, Orlando, Florida,USA, Oct. 6-9, 2003, Vol. 4: 2688-2692.[6]Papapetrou E, Todorova P, Karapantazis S, and Pavlidou N.Adaptive handover management for multiservice NGSOsatellite systems [C]. IEEE International Symposium onPersonal, Indoor and Mobile Radio Communications, Athens,Greece, Sep. 3-7, 2007: 1-5.[7]Boukhatem L, Beylot A L, Gai D, and Pujolle G. TCRA: Atime-based channel reservation scheme for handover requestsin LEO satellite systems. International Journal on SatelliteCommunication Networks, 2003, 21(2): 227-240.[8]Heraclio Heredia-Ureta, Felipe A, Cruz-Pez, and LauroOrtigoza-Guerrero. Capacity optimization in multi-servicemobile wireless networks with multiple fractional channelreservation[J].IEEE Transactions on Vehicular Technology.2003, 52(6):1519-1539[9]Ross K. Multiservice Loss Model For BroadbandTelecommunication Networks [M]. Berlin, Springer, 1995,Ch.5.[10]Blum C and Roli A. Metaheuristics in combinatorialoptimization: Overview and conceptual comparison[J].ACMComputer Survey.2003, 35(3):268-308
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出版历程
  • 收稿日期:  2009-04-02
  • 修回日期:  2010-04-27
  • 刊出日期:  2010-07-19

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