指针转发MIPv6移动管理

Chen-Hung Chu, C. Weng
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引用次数: 25

摘要

互联网以爆炸性的速度广泛使用,网络的运行和部署取得进展,使生活与这一全球媒介密切相关的人数增加。在广域部署中,如果访问网络与移动节点的家庭网络之间的距离较大,则由于移动IP注册而产生的大量信令流量和切换延迟可能会很高。此外,具有小单元的基站会产生频繁的切换,并且每次这样的本地切换都需要向远程Home Agent和相应节点注册,这增加了开销,并进一步加剧了数据包丢失。本文提出了一种允许移动节点在移动IP网络中使用级联隧道方案的方法,称为指针转发MIPv6移动管理(PFMIPv6)策略。该方法降低了远程本地代理和相应节点的更新成本,大大减少了网络中信令消息的数量,并且移动节点的隧道链是动态确定的,不需要预先定义静态锚点或区域。这项工作的结果表明,当MNs快速移动时,新策略比MIFv6方法产生更低的平均成本,但数据包很少收到。
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Pointer forwarding MIPv6 mobility management
Widespread use of the Internet at an explosive pace and progress in the operation and deployment of networks have increased the number of people whose lives are tightly involved with this global medium. In wide area deployment, heavy signaling traffic and the handoff latencies due to mobile IP registration could be high if the distance between the visited network and the home network of a Mobile Node is large. Also, base stations with small cells yield frequent handoffs, and requiring a registration with a distant Home Agent and Corresponding Nodes for each such local handoff increases overheads and further aggravates packet loss. This paper, proposes an approach to allowing Mobile Nodes to use a cascaded tunneling scheme in a mobile IP network, called Pointer Forwarding MIPv6 Mobility Management (PFMIPv6) strategy. This approach reduces the cost of updating distant Home Agent and Corresponding Nodes, which greatly reduces the number of signaling messages in the network Furthermore, the Tunneling Chain of a Mobile Node is determined dynamically with no need for preliminary definitions of static anchors or regions. The results of this work demonstrate that the new strategy yields lower average costs than the MIFv6 method, when MNs move fast, but packets are rarely received.
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