首页> 外文会议>International Conference on Mobile Ad-hoc and Sensor Networks(MSN 2007); 20071212-14; Beijing(CN) >Low-Latency Mobile IP Handover Based on Active-Scan Link Layer Assisted FMIPv6
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Low-Latency Mobile IP Handover Based on Active-Scan Link Layer Assisted FMIPv6

机译:基于主动扫描链路层辅助的FMIPv6的低延迟移动IP切换

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IEEE 802.11-based wireless local area networks (WLANs) have been set up in many public places in recent years. It provides convenient network connectivity to mobile nodes (MNs) and allows users moving from one wireless network to another. With mobility protocol support, such as Mobile IPv6 (MIPv6), people can roam across wireless IP subnets without loss of network-layer connectivity. However, the handover latency may make users uncomfortable in MIPv6. To support seamless handover, an enhanced MIPv6 scheme, Fast Handovers for Mobile IPv6 (FMIPv6) [1], was been proposed. In order to further reduce the handover latency, integration IEEE 802.11 and MIPv6 is necessary. Unfortunately, when integrating the IEEE 802.11-based standard with FMIPv6, FMIPv6 always fails to perform predictive handover procedure and results in reactive handover. It is because of the protocol nature of IEEE 802.11 and the weak relationship between IEEE 802.11 and FMIPv6. Furthermore, a MN can not receive packets destined to it as it sends the FBU to the original access router (OAR). This would cause unnecessary packet loss and make the predictive handover have more packet loss then reactive. Those issues will cause quality of services degradation and make real-time application unreachable. In this paper, a low-latency MIPv6 handover scheme will be proposed. It is a FMIPv6-based scheme, which is based on an active-scan scheme link layer assistance. It has the advantage of FMIPv6 and can reduce the unnecessary packet loss when the handover occurs. Also, with the active scheme assistance, it can avoid the longest phase that IEEE 802.11 will enter, and can lower the handover latency.
机译:近年来,在许多公共场所已经建立了基于IEEE 802.11的无线局域网(WLAN)。它为移动节点(MN)提供了方便的网络连接,并允许用户从一个无线网络移动到另一个无线网络。借助诸如移动IPv6(MIPv6)之类的移动协议支持,人们可以在无线IP子网中漫游而不会丢失网络层连接性。但是,切换延迟可能会使用户对MIPv6感到不适。为了支持无缝切换,提出了一种增强的MIPv6方案,即移动IPv6快速切换(FMIPv6)[1]。为了进一步减少切换延迟,必须集成IEEE 802.11和MIPv6。不幸的是,当将基于IEEE 802.11的标准与FMIPv6集成时,FMIPv6始终无法执行预测性的切换过程,并导致反应式切换。这是因为IEEE 802.11的协议性质以及IEEE 802.11和FMIPv6之间的弱关系。此外,MN在将FBU发送到原始访问路由器(OAR)时无法接收发往其的数据包。这将导致不必要的数据包丢失,并使预测切换具有更多的数据包丢失,然后再做出反应。这些问题将导致服务质量下降,并使实时应用程序无法访问。在本文中,将提出一种低延迟的MIPv6切换方案。它是基于FMIPv6的方案,它基于主动扫描方案链路层辅助。它具有FMIPv6的优点,并且可以减少切换发生时不必要的数据包丢失。此外,借助主动方案,它可以避免IEEE 802.11进入的最长阶段,并可以降低切换延迟。

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