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A New Mobility Management Scheme in Proxy Mobile IPv6 Networks with Dynamic Paging Support

机译:具有动态寻呼支持的代理移动IPv6网络中的新移动性管理方案

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Proxy Mobile IPv6 (PMIPv6) is a network-based mobility management protocol and it does not require mobile node's involving in mobility management. In PMIPv6, the Mobile Access Gateway (MAG) incurs a high signaling cost to update the location of a mobile node to the remote Local Mobility Anchor (LMA) if it moves frequently. It may cause excessive signaling traffic and increase a high traffic load on LMA. Therefore, we propose a new mobility management scheme in proxy mobile IPv6 networks with dynamic paging support. To minimize signaling overhead, in our proposal, an idle mobile node does not register when moving within a paging area. Moreover, the size of the paging area is determined dynamically according the changes of mobility and traffic patterns of the mobile node. An analytic model is applied to determine the optimal size of the paging area. The cost analysis using fluid flow model presented in this paper shows that our proposal can achieve performance superior that of PMIPv6 scheme.
机译:代理移动IPv6(PMIPv6)是基于网络的移动性管理协议,它不需要移动节点参与移动性管理。在PMIPv6中,如果移动节点频繁移动到远程本地移动锚点(LMA),则将其更新到远程本地移动锚点(LMA)的位置将导致较高的信令成本。这可能会导致过多的信令流量,并增加LMA的高流量负载。因此,我们在具有动态寻呼支持的代理移动IPv6网络中提出了一种新的移动性管理方案。为了使信令开销最小化,在我们的建议中,空闲的移动节点在寻呼区域内移动时不进行注册。此外,根据移动节点的移动性和业务模式的变化来动态地确定寻呼区域的大小。应用分析模型来确定寻呼区域的最佳大小。本文提出的使用流体流动模型的成本分析表明,我们的建议可以实现优于PMIPv6方案的性能。

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