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Multilayer Hierarchical Model for Mobility Management in IPv6: A Mathematical Exploration

机译:IPv6中移动性管理的多层层次模型:数学探索

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摘要

The mobility solution provided by Mobile IPv6 (MIPv6) imposes too much signaling load to the network and enforces large handoff latency to end user. Hierarchical MIPv6 (HMIPv6) on the other hand, is designed by organizing MIPv6 in layered architecture and performs better than MIPv6 in terms of handoff latency and signaling load. Observation shows that, there is still possibility to shrink the handoff latency and the signaling load by further extending HMIPv6 into multiple layers. To explore this possibility of enhanced performance through layered architecture, this paper aimed at mathematical exploration of an N-layered MIPv6 network architecture in order to figure out the optimal levels of hierarchy for mobility management. A widespread analysis is carried out on various parameters such as location update frequency and cost, handoff latency and packet delivery cost. Influence of queuing delay on handoff latency is examined by modeling M/M/1/K queue in the architecture and user mobility is modeled using Markov chain. Analytical investigation reveals that three levels of hierarchy in MIPv6 architecture provide an optimal solution for mobility management.
机译:由移动IPv6(MIPv6)提供的移动性解决方案向网络施加了过多的信令负载,并向最终用户施加了较大的切换延迟。另一方面,分层MIPv6(HMIPv6)是通过在分层体系结构中组织MIPv6来设计的,并且在切换延迟和信令负载方面比MIPv6更好。观察表明,通过将HMIPv6进一步扩展到多层,仍然有可能缩小切换延迟和信令负载。为了探索通过分层体系结构增强性能的可能性,本文旨在对N层MIPv6网络体系结构进行数学探索,以便找出用于移动性管理的最佳层次结构。对各种参数进行了广泛的分析,例如位置更新频率和成本,越区切换等待时间和分组传送成本。通过在体系结构中对M / M / 1 / K队列进行建模来检查排队延迟对切换延迟的影响,并使用马尔可夫链对用户移动性进行建模。分析研究表明,MIPv6体系结构中的三个层次结构层次为移动性管理提供了最佳解决方案。

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