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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >An accelerating handover process scheme for IEEE 802.16j multi-hop relay networks
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An accelerating handover process scheme for IEEE 802.16j multi-hop relay networks

机译:IEEE 802.16j多跳中继网络的加速切换处理方案

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IEEE 802.16j multi-hop relay network systems provide the mobile wireless communication environment. In such network systems, the handover scanning procedure allows a mobile station (MS) to obtain the information about the handover target base stations (BSs) or relay stations (RSs). The network systems need more time to negotiate the association parameters and to handle scanning the BSs and the RSs when the number of BS and RS increases. It results in more overhead for the handover scanning procedure. In order to accelerate the handover process and reduce the transmission interruption, efficient handover scanning procedure schemes and corresponding algorithms must be developed and designed. A novel relative angle computing algorithm is proposed in this article to accelerate the handover process by taking into account the moving behavior of the MS, and the distances among the MS, the RS, and the BS. The main idea of this algorithm is to reduce the management information overhead and to estimate the potential moving path of the MS in the wireless mobile communication networks. By using the proposed scheme, we eliminate the unnecessary associations and scanning intervals, and reduce the handover scanning procedure efficiently. Simulation result demonstrate the superior performance of our proposed scheme and its ability to strike the appropriate performance in the handover overhead and the message delay for IEEE 802.16j multi-hop relay network systems.
机译:IEEE 802.16j多跳中继网络系统提供了移动无线通信环境。在这样的网络系统中,切换扫描过程允许移动站(MS)获得关于切换目标基站(BS)或中继站(RS)的信息。当BS和RS的数量增加时,网络系统需要更多时间来协商关联参数并处理对BS和RS的扫描。这导致切换扫描过程的更多开销。为了加速切换过程并减少传输中断,必须开发和设计有效的切换扫描过程方案和相应的算法。本文提出了一种新颖的相对角度计算算法,通过考虑MS的移动行为以及MS,RS和BS之间的距离来加速切换过程。该算法的主要思想是减少管理信息开销并估计无线移动通信网络中MS的潜在移动路径。通过使用所提出的方案,我们消除了不必要的关联和扫描间隔,并有效地减少了切换扫描过程。仿真结果证明了我们提出的方案的优越性能,以及在IEEE 802.16j多跳中继网络系统的切换开销和消息延迟方面达到适当性能的能力。

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