期刊文献+

多业务LEO卫星网络中基于概率的带宽预留策略 被引量:4

Probability-Based Bandwidth Reservation Strategy for LEO Satellite Networks with Multi-Class Traffic
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摘要 针对多业务LEO卫星网络中频繁切换所带来的通信链路保持问题,提出了基于概率的带宽自适应预留策略(APRS).该策略根据LEO卫星网络中地面终端运动的确定性与可预测性,利用终端发生切换的概率为即将到达小区的呼叫进行非全额带宽预留,并基于系统切换性能对预留带宽进行实时自适应调整.文中还给出了该策略在多业务条件下的具体实施方法,并通过仿真验证了APRS的有效性.仿真结果表明,APRS能够在不同用户QoS要求的多业务环境下合理预留、分配带宽,为用户提供满意的QoS,增大系统资源利用率. In order to maintain users’smooth connection to satellites during frequent handovers in LEO(Low Earth Orbit) satellite networks with multi-class traffic,an adaptive probability-based bandwidth reservation strategy(APRS) is proposed.Based on the deterministic and predictive features of the movement of mobile users APRS reserves the bandwidth without full amount for coming handovers and according to the handover probability of mobile users and adaptively adjusts its reservation according to the current network condition.Moreover,the implementation methods of APRS in multi-class traffic environment are proposed,and the effectiveness of it is verified via simulation.The results indicate that APRS can reserve and allocate appropriate bandwidth for users in multi-class traffic environment,provide users with satisfactory quality of service(QoS) and increase the bandwidth utilization.
出处 《华南理工大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第6期84-89,96,共7页 Journal of South China University of Technology(Natural Science Edition)
基金 国家自然科学基金资助项目(61032003)
关键词 LEO卫星网络 切换管理 带宽预留 服务质量 LEO satellite network handover management bandwidth reservation quality of service
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参考文献16

  • 1Jamalipour A ,Tung T. The role of satellites in global IT: trends and implications [ J ]. IEEE Personal Communica- tions,2001,12(6) :5-11.
  • 2Taleb T, Hadjadj-Aoul Y, Ahmed T. Challenges, opportu- nities, and solutions for converged satellite and terrestrial networks [ J ]. IEEE Wireless Communications, 2011,18 ( 1 ) :46-52.
  • 3Korcak O, Alago F. Link-layer handover in earth-fixed LEO satellite systems [ C ] //IEEE International Confe- rence on Communications. Dresden : IEEE ,2009 : 1-5.
  • 4Wang Zhipeng, Mathiopoulos P T, Schober R. Channel partitioning policies for multi-class traffic in LEO-MSS [ J]. IEEE Transactions on Aerospace and Electronic Sys- tems, 2009,45 (4) : 1320-1334.
  • 5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. 被引量:6
  • 6Boukhatem L, Beylot A L, Ga ti D, et al. TCRA: a time- based channel reservation scheme for handover requests in LEO satellite systems [ J ]. International Journal on Sate-llite Communication Networf:s ,2003,21 ( 2 ) : 227- 240.
  • 7Ding Ding, Ma Dong-Tang, ~/ei Ji-Bo. A threshold-based handover prioritization scheme in LEO satellite networks [C]//The 4th International Conference on Wireless Com- munications, Networking and Mobile Computing. Dalian: IEEE,2008 : 1-6.
  • 8Na Zhen-yu, Wang Zhen-yong, Guo Qing, et al. A call ad- mission control algorithm based on utility fairness for Low Earth Orbit satellite networks [ C ]//IEEE International Conference on Communications. Beijing: IEEE, 2008: 2835-2839.
  • 9Matar A S, Abd-Elfadeel G, Brahim I I, et al. Handover priority schemes for multi-class traffic in LEO mobile sate- llite systems [ J ]. International Journal of Computer Sci- ence Issues,2012,9(2) :46-56.
  • 10Xu Yi, Ding Quan-long, Ko Chi-ehung. An elastic han- dover scheme for LEO satellite mobile communication systems [ C ] //IEEE Global Telecommunication Confe- rence. San Francisco : IEEE ,2000 : 1161 - 1165.

二级参考文献10

  • 1Hong D and Rappaport S S. Traffic model and performance analysis for cellular mobile radio telephone systems with prioritized and nonprioritized handoff procedures. IEEE Transactions on Vehicular Technology, 1986, 35(3): 77-92.
  • 2Ding Ding, Ma Dong-tang, Li Min, and Wei Ji-bo. Analytical approach of QoS-guaranteed call admission control and handover management scheme in multiservice LEO satellite networks. Accepted by the 60th International Astronautical Congress, Daejeon, Republic of Korea, 2009.
  • 3Chowdhury P K, Atiquzzaman M, and Ivancic W. Handover schemes in satellite networks: State-of-the-art and future research directions. IEEE Communications Surveys & Tutorials, 2006, 8(4): 2-14.
  • 4G 'erard Maral, Joaquin Restrepo, and Enrico Del Re, et al.. Performance analysis for a guaranteed handover service in an LEO constellation with satellite-fixed cell. IEEE Transactions on Vehicular Technology, 1998, 47(4): 1200-1214.
  • 5Riadh Dhaou, Andre-Luc Beylot, and Monique Becker. ATCR: An Adaptive Time-based Channel Reservationmechanism for LEO satellite fixed cell systems [C]. IEEE 58th Vehicular Technology Conference, Orlando, Florida, USA, Oct. 6-9, 2003, Vol. 4: 2688-2692.
  • 6Papapetrou E, Todorova P, Karapantazis S, and Pavlidou N. Adaptive handover management for multiservice NGSO satellite systems [C]. IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, Athens, Greece, Sep. 3-7, 2007: 1-5.
  • 7Boukhatem L, Beylot A L, Gaiti D, and Pujolle G. TCRA: A time-based channel reservation scheme for handover requests in LEO satellite systems. International Journal on Satellite Communication Networks, 2003, 21(2): 227-240.
  • 8Heraclio Heredia-Ureta, Felipe A, Cruz-Perez, and Lauro Ortigoza-Guerrero. Capacity optimization in multi-service mobile wireless networks with multiple fractional channel reservation. IEEE Transactions on Vehicular Technology, 2003, 52(6): 1519-1539.
  • 9Ross K. Multiservice Loss Model For Broadband Telecommunication Networks [M]. Berlin, Springer, 1995, Ch.5.
  • 10Blum C and Roli A. Metaheuristics in combinatorial optimization: Overview and conceptual comparison. ACM Computer Survey, 2003, 35(3): 268-308.

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