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Handover Latency of MIPv6 Implementation in Linux

机译:Linux中MIPv6实现的切换延迟

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Mobile IPv6 (MIPv6) is proposed to enable network applications to continuously operate at the required quality of service in the wire or wireless IP network. Handover latency of MIPv6 is the main cause of packet loss and performance degradation and is too long for real-time and throughput-sensitive applications. Enhancement of basic MIPv6 with respect to handover latency has been studied widely. A L3 handover procedure can be divided into four phases: Movement Detection, CoA Configuration, Home agent Registration and Route Optimization. The latencies in different handover phases have been measured in an operated wireless LAN (WLAN) in order to determine the performance bottleneck of handover. The effect of handover latency on the sliding window of TCP and application layer protocol is also parsed with experiment. Further more, we modify the MIPv6 implementations of Linux on mobile node and home agent to verify the potential of performance improvement for MIPv6 protocol. The experiment result can help the enhancement of MIPv6 and application development.
机译:提出了移动IPv6(MIPv6)以使网络应用程序能够以线路或无线IP网络的所需服务质量连续运行。 MIPv6的移交延迟是数据包丢失和性能下降的主要原因,对于实时和吞吐量敏感应用而言太长。广泛地研究了关于切换延迟的基本MIPv6的增强。 L3切换过程可分为四个阶段:移动检测,COA配置,归属代理注册和路由优化。在操作的无线LAN(WLAN)中已经测量了不同切换阶段的延迟,以确定切换的性能瓶颈。实验也解析了TCP和应用层协议滑动窗口的切换延迟的影响。此外,我们修改了在移动节点和归属代理上的Linux的MIPv6实现,以验证MIPv6协议的性能改进的可能性。实验结果可以帮助提高MIPv6和应用程序开发。

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