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低轨卫星网小区移动性对切换的影响

秦勇 张军 张涛

秦勇, 张军, 张涛. 低轨卫星网小区移动性对切换的影响[J]. 电子与信息学报, 2007, 29(12): 2960-2964. doi: 10.3724/SP.J.1146.2006.00515
引用本文: 秦勇, 张军, 张涛. 低轨卫星网小区移动性对切换的影响[J]. 电子与信息学报, 2007, 29(12): 2960-2964. doi: 10.3724/SP.J.1146.2006.00515
Qin Yong, Zhang Jun, Zhang Tao. Impact of Cell Mobility on Handovers in Low Earth Orbit Satellite Systems[J]. Journal of Electronics & Information Technology, 2007, 29(12): 2960-2964. doi: 10.3724/SP.J.1146.2006.00515
Citation: Qin Yong, Zhang Jun, Zhang Tao. Impact of Cell Mobility on Handovers in Low Earth Orbit Satellite Systems[J]. Journal of Electronics & Information Technology, 2007, 29(12): 2960-2964. doi: 10.3724/SP.J.1146.2006.00515

低轨卫星网小区移动性对切换的影响

doi: 10.3724/SP.J.1146.2006.00515
基金项目: 

国家自然科学基金(10377005,60532030)资助课题

Impact of Cell Mobility on Handovers in Low Earth Orbit Satellite Systems

  • 摘要: 低轨卫星网络点波束覆盖布局与用户相对运动方向决定了用户在小区间的切换关系,并直接影响用户切换性能。该文针对两种典型的小区运动模式建立了移动模型,分析了驻留时间、切换概率和平均切换次数等移动性指标,并结合具体的信道分配策略分析比较了小区移动性对用户切换性能的影响。结果表明在小区低重叠度的条件下小区运动模式Ⅱ的用户切换性能优于模式Ⅰ,更适用于低轨卫星网络,为低轨卫星点波束的布局提供了参考。
  • Akyildiz I F, Uzunalioglu H, and Bender M D. Handover management in Low Earth Orbit (LEO) satellite networks[J].ACM-Baltzer Journal of Mobile Networks and Applications.1999, 4(4):301-[2]Del Re E, Fantacci R, and Giambene G. Handover queuing Strategies with dynamic and fixed channel allocation techniques in low earth orbit mobile satellite systems[J].IEEE Trans. on Communications.1999, 47(1):89-102[3]Yi Xu, Quan Long Ding, and Chi Chung Ko. Dynamic channel reservation in satellite-based wireless personal communication networks[C]. ATM (ICATM 2001) and High Speed Intelligent Internet Symposium, Seoul, Korea, 2001: 186-190.[4]Lee Heesoo, Lee Sok-kyu, and Chang KyungHi, et al.. A dynamic channel assignment in low earth orbit mobile satellite systems[C]. Vehicular Technology Conference, Seoul, Korea, 2002, vol.2: 1016-1020.[5]Kalyanasundaram S, Edwin K P, and Shroff N B. An efficient scheme to reduce handoff dropping in LEO satellite ystems[C]. Proc. of the 17th IEEE Symposium on Reliable istributed Systems, Indiana, 1998: 431-436.[6]Re E D, Fantxci R, and Giambene G. Efficient dynamic channel allocation techniques with handover queueing for mobile satellite networks[J].IEEE J. on Select. Areas in Comm.1995, 13(2):397-405[7]Boukhatem L, Beylot A L, and Gaiti1 D, et al.. TCRA: a time-based channel reservation scheme for handover requests in LEO satellite systems[J], International Journal of Satellite Communications and Networking, 2003, 21(33): 227-240.[8]Papapetrou E, Karapantazis S, and Dimitriadis G, et al.. Satellite handover techniques for LEO networks[J].International Journal of Satellite Communications and Networking.2004, 22(22):231-245[9]Sungrae Cho, Akyildiz I F, and Bender M D, et al.. A New Spotbeam Handover Management Technique for LEO Satellite Networks[C]. Global Telecommunications Conference, IEEE, San Francisco, 2000 vol.2: 1156-1160.[10]Nanda S. Teletraffic models for urban and suburban microcells: Cell sizes and handoff rates[J].IEEE Trans. on Vehicular Technology.1993, 42(4):673-682[11]Re E D, Fantacci R, and Giambene G. Characterization of user mobility in Low Earth Orbit mobile satellite systems[J].Wireless Networks.2000, 6(3):165-179
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出版历程
  • 收稿日期:  2006-04-18
  • 修回日期:  2007-01-12
  • 刊出日期:  2007-12-19

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