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Adaptive Route Optimization in Hierarchical Mobile IPv6 Networks

机译:分层移动IPv6网络中的自适应路由优化

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By introducing a mobility anchor point (MAP), Hierarchical Mobile IPv6 (HMIPv6) reduces the signaling overhead and handoff latency associated with Mobile IPv6. However, if a mobile node (MN)''s session activity is high and its mobility is relatively low, HMIPv6 may degrade end-to-end data throughput due to the additional packet tunneling at the MAP. In this paper, we propose an adaptive route optimization (ARO) scheme to improve the throughput performance in HMIPv6 networks. Depending on the measured session-to-mobility ratio (SMR), ARO chooses one of the two different route optimization algorithms adaptively. Specifically, an MN informs a correspondent node (CN) of its on-link care-of address (LCoA) if the CN''s SMR is greater than a predefined threshold. If the SMR is equal to or lower than the threshold, the CN is informed with the MN''s regional CoA (RCoA). We analyze the performance of ARO in terms of balancing the signaling overhead reduction and the data throughput improvement. We also derive the optimal SMR threshold explicitly to achieve such a balance. Analytical and simulation results demonstrate that ARO is a viable scheme for deployment in HMIPv6 networks.
机译:通过引入移动性锚点(MAP),分层移动IPv6(HMIPv6)减少了与移动IPv6相关的信令开销和切换延迟。但是,如果移动节点(MN)的会话活动较高,并且其移动性相对较低,则HMIPv6可能会由于MAP上的附加数据包隧穿而降低端到端数据吞吐量。在本文中,我们提出了一种自适应路由优化(ARO)方案,以提高HMIPv6网络的吞吐量性能。根据所测量的会话/移动率(SMR),ARO自适应地选择两种不同的路线优化算法之一。具体地,如果CN的SMR大于预定阈值,则MN将其链路上转交地址(LCoA)通知给对应节点(CN)。如果SMR等于或小于阈值,则将MN的区域CoA(RCoA)通知CN。我们在平衡信令开销减少和提高数据吞吐量方面分析了ARO的性能。我们还明确得出最佳SMR阈值以实现这种平衡。分析和仿真结果表明,ARO是在HMIPv6网络中部署的可行方案。

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