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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Performance Enhancement of Fast Handover for MIPv6 by Reducing Out-of-Sequence Packets
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Performance Enhancement of Fast Handover for MIPv6 by Reducing Out-of-Sequence Packets

机译:通过减少失序包来增强MIPv6快速切换的性能

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摘要

FMIPv6 can reduce packet loss using a tunnel-based handover mechanism which relies on L2 triggers, such as transmitting a packet from a previous access router (PAR) to a new access router (NAR). However, this mechanism may result in decreasing the performance of TCP due to out-of-sequence packets arriving between the tunneled packets from the Home Agent and PAR, and the directly transmitted packets from the correspondent node (CN). In this paper, we propose a new scheme called EF-MIPv6 that uses a modified snoop protocol to prevent the packet reordering problem. This new scheme can prevent sequence reordering of data packets and improve the performance of TCP using enhanced fast binding update (EF-BU). This approach requires modification of the TCP header to execute the last packet expression from the PAR, include a new polling data packet, and use the modified access point system. Simulation results demonstrate that managing the packet sequence in our proposed scheme greatly increases the overall TCP performance in a Mobile IPv6 and FMIPv6 networks.
机译:FMIPv6可以使用依赖于L2触发器的基于隧道的切换机制来减少数据包丢失,例如,将数据包从先前的访问路由器(PAR)传输到新的访问路由器(NAR)。但是,由于来自本地代理和PAR的隧道化数据包与来自对端节点(CN)的直接传输数据包之间的乱序数据包到达,此机制可能会导致TCP性能下降。在本文中,我们提出了一种称为EF-MIPv6的新方案,该方案使用了经过改进的侦听协议来防止数据包重新排序问题。这种新方案可以防止数据包的顺序重新排序,并使用增强的快速绑定更新(EF-BU)改善TCP的性能。这种方法需要修改TCP报头,以执行来自PAR的最后一个数据包表达式,包括一个新的轮询数据包,并使用修改后的接入点系统。仿真结果表明,在我们提出的方案中管理数据包序列大大提高了移动IPv6和FMIPv6网络中的总体TCP性能。

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