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Cost-Effective and Fast Handoff Scheme in Proxy Mobile IPv6 Networks with Multicasting Support

机译:具有多播支持的代理移动IPv6网络中的经济高效快速切换方案

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With recent advancements in wireless communication technologies, mobile multicasting is becoming important, in an effort to use network resources more efficiently. In the past, when various mobile IP-based multicast techniques were proposed, the focus was on the costs needed for network delivery to provide multicast services, as well as on minimizing the multicast handover delay. However, it is fundamentally difficult to resolve the problems of handover delay and tunnel convergence for techniques using MIPv6 (Mobile IPv6), a host-based mobility management protocol. To resolve these problems, the network-based mobility management protocol PMIPv6 (Proxy Mobile IPv6) was standardized. Although performance is improved in PMIPv6 over MIPv6, it still suffers from problems of handover delay and tunnel convergence. To overcome these limitations, a technique called LFH (Low-cost and Fast Handoff) is proposed in this paper, for fast and low-cost mobility management with multicasting support in PMIPv6 networks. To reduce the interactions between the complex multicast routing protocol and multicast messages, a simplified proxy method called MLD (Multicast Listener Discovery) is implemented and modified. Furthermore, a TCR (Tunnel Combination and Reconstruction) algorithm was used in the multicast handover procedure within the LMA (Local Mobility Anchor) domain, as well as in the multicast handover procedure between domains, in order to overcome the problem of tunnel convergence. It was found that, compared to other types of multicast techniques, LFH reduces multicast delay, and requires lower cost.
机译:随着无线通信技术的最新发展,移动多播变得越来越重要,以努力更有效地使用网络资源。过去,当提出各种基于移动IP的多播技术时,重点是提供多播服务的网络交付所需的成本,以及最小化多播切换延迟。但是,对于使用基于主机的移动性管理协议MIPv6(移动IPv6)的技术,从根本上解决移交延迟和隧道收敛的问题非常困难。为了解决这些问题,对基于网络的移动性管理协议PMIPv6(代理移动IPv6)进行了标准化。尽管PMIPv6的性能比MIPv6有所提高,但仍存在切换延迟和隧道收敛的问题。为了克服这些限制,本文提出了一种称为LFH(低成本和快速切换)的技术,用于在PMIPv6网络中支持多播的快速和低成本移动性管理。为了减少复杂的多播路由协议和多播消息之间的交互,实现并修改了一种称为MLD(多播侦听器发现)的简化代理方法。此外,为了克服隧道收敛的问题,在LMA(本地移动锚)域内的多播切换过程以及域之间的多播切换过程中,使用了TCR(隧道组合和重建)算法。已经发现,与其他类型的多播技术相比,LFH减少了多播延迟,并且需要更低的成本。

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