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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Implementation of enhanced forward pointer-based mobility management scheme for handling internet and intranet traffic in wireless mesh network
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Implementation of enhanced forward pointer-based mobility management scheme for handling internet and intranet traffic in wireless mesh network

机译:在无线网状网络中处理Internet和Intranet流量的增强前向指针的移动性管理方案的实现

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摘要

To implement WMN, IEEE 802.11s has been developed. The routing protocol for selecting a path between two mesh stations in IEEE 802.11s is hybrid wireless mesh protocol (HWMP). But mobility of external stations has not been considered in IEEE 802.11s. For handling movement of clients, many mobility management schemes have been proposed. Some of such schemes are: ANT, Mesh Mobility Management (M, Infrastructure Mesh (iMesh), SMesh, MEsh networks with MObility management (MEMO), Wireless mesh Mobility Management (WMM), Static Anchor Scheme, Dynamic Anchor Scheme, LMMesh, Session-to-Mobility-Ratio based Scheme and Forward Pointer-Based Mobility Management Scheme (FPBR). But none of the schemes except FPBR have been integrated with IEEE 802.11s for providing mobility support to the external stations. FPBR has been proposed to enhance IEEE 802.11s for providing mobility support to external stations, but it can support internet traffic only. In WMN both internet and intranet traffic to and from the external station is important. In this paper, an improved version of FPBR named Enhanced FPBR (EFPBR) Scheme has been introduced to handle both internet and intranet traffic. Both EFPBR and HWMP have been numerically analyzed. HWMP and EFPBR schemes are simulated and the performances are compared. From the performance comparison, it can be observed that EFPBR performs better than that of IEEE 802.11s concerning throughput, end-to-end delay, routing overhead and average handoff cost. The number of route management packets transferred per handoff measured from numerical analysis and simulation has also been compared.
机译:为了实现WMN,已经开发了IEEE 802.11s。IEEE 802.11s中用于在两个网状站点之间选择路径的路由协议是混合无线网状协议(HWMP)。但是,在IEEE 802.11s中没有考虑外部站的移动性。为了处理客户端的移动,已经提出了许多移动性管理方案。其中一些方案包括:蚂蚁、网格移动管理(M)、基础设施网格(iMesh)、SMesh、具有移动管理(MEMO)的网格网络、无线网格移动管理(WMM)、静态锚方案、动态锚方案、LMMesh、基于会话-移动率的方案和基于前向指针的移动管理方案(FPBR)。但是,除了FPBR之外,没有任何方案与IEEE 802.11s集成,以向外部站点提供移动性支持。FPBR旨在增强IEEE 802.11s,为外部站点提供移动性支持,但它只能支持互联网流量。在WMN中,进出外部站点的internet和intranet流量都很重要。本文介绍了一种改进的FPBR方案,称为增强型FPBR(EFPBR),用于处理internet和intranet流量。对EFPBR和HWMP进行了数值分析。对HWMP和EFPBR方案进行了仿真,并对其性能进行了比较。从性能比较可以看出,EFPBR在吞吐量、端到端延迟、路由开销和平均切换成本方面优于IEEE 802.11s。还比较了通过数值分析和仿真测量的每次切换传输的路由管理数据包的数量。

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