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A three-level mobility management scheme for hierarchical mobile IPv6 networks

机译:分层移动IPv6网络的三级移动性管理方案

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Performance evaluation shows that Hierarchical Mobile IPv6 (HMIPv6) cannot outperform standard Mobile IPv6 (MIPv6) in all scenarios. Thus, adaptive protocol selection under certain circumstances is desired. Moreover, it is necessary to balance the load among different Mobility Anchor Points (MAPs). This paper proposes an efficient three-level hierarchical architecture for mobility management in HMIPv6 networks, in which a mobile node (MN) may register with either a higher/lower MAP or its home agent according to its speed and the number of connecting correspondent nodes (CNs). An admission control algorithm and a replacement algorithm are introduced to achieve load balancing between two MAP levels and among different MAPs within the same MAP level. Admission control is based on the number of CNs but not MNs that an MAP serves. In case there is no capacity for an MN, the MAP chooses an existing MN to be replaced. The replaced MN uses the MAP selection algorithm again to choose another mobility agent. Simulation results showed that the proposed scheme achieves better performance not only in reducing the signaling overhead, but also in load balancing among different MAPs.
机译:性能评估表明,分层移动IPv6(HMIPv6)不能在所有情况下都优于标准移动IPv6(MIPv6)。因此,期望在某些情况下的自适应协议选择。此外,有必要在不同的移动锚点(MAP)之间平衡负载。本文提出了一种用于HMIPv6网络中移动性管理的有效的三级分层体系结构,其中移动节点(MN)可以根据其速度和连接对应节点的数量向较高/较低MAP或其本地代理注册( CNs)。引入准入控制算法和替换算法以实现两个MAP级别之间以及同一MAP级别内的不同MAP之间的负载平衡。准入控制基于MAP服务的CN的数量,而不基于MN的数量。如果MN没有容量,则MAP选择要替换的现有MN。替换的MN再次使用MAP选择算法来选择另一个移动代理。仿真结果表明,该方案不仅降低了信令开销,而且在不同MAP之间实现了负载均衡,取得了较好的性能。

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