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How to Improve the Efficiency of IPv6 Handovers in IEEE 802.16 Networks

机译:如何提高IEEE 802.16网络中IPv6切换的效率

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The first generation of fully conformant IEEE 802.16-based networks is being deployed throughout the world. Most of these networks do not support full mobility, due to radio access layer limitations. Newer solutions, based on IEEE 802.16-2005 standard, offer mobility support for subscriber stations. Unfortunately, after quickly changing the point of attachment on the WiMAX layer, very slow and inefficient IPv6 reconfiguration takes place. Delays introduced by DHCPv6 stateless automatic configuration and Mobile IPv6 can easily diminish or even render useless all benefits gained using the efficient WiMAX - data link layer. IPv6 automatic configuration process was not designed with fast reconfiguration in mind. As handover speed is a crucial requirement in mobile cellular environments, reasons behind delays introduced by IPv6 layer mechanisms have to be analyzed and appropriate countermeasures applied. Proposals include novel use of DHCPv6 relays for remote configuration, solving DAD delays, limiting Binding Update procedure in Mobile IPv6, configuring routing through DHCPv6 communication and some other. This paper describes all stages of full IPv6 handover in IEEE 802.16 environment, focusing on major reasons of reconfiguration delays. A new metric for assessing impact of every stage on handover efficiency is defined. Several proposed improvements to the IPv6 handover process are evaluated and simulation results are presented. A discussion regarding possible generalization of best improvement proposals and further research areas concludes this paper.
机译:第一代完全符合IEEE 802.16标准的网络正在全球范围内部署。由于无线电接入层的限制,这些网络中的大多数都不支持完全移动性。基于IEEE 802.16-2005标准的较新的解决方案为订户站提供移动性支持。不幸的是,在快速改变WiMAX层上的连接点之后,发生了非常缓慢且效率低下的IPv6重新配置。 DHCPv6无状态自动配置和移动IPv6所引入的延迟可以轻松地减少甚至使使用高效WiMAX数据链路层获得的所有好处变得毫无用处。 IPv6自动配置过程在设计时并未考虑快速重新配置。由于切换速度是移动蜂窝环境中的关键要求,因此必须分析IPv6层机制引入的延迟背后的原因,并采取适当的对策。提议包括将DHCPv6中继用于远程配置,解决DAD延迟,限制Mobile IPv6中的绑定更新过程,通过DHCPv6通信配置路由等新方法。本文介绍了IEEE 802.16环境中完整IPv6切换的所有阶段,重点介绍了重新配置延迟的主要原因。定义了评估每个阶段对切换效率的影响的新度量。评估了对IPv6切换过程提出的一些改进建议,并给出了仿真结果。总结了有关最佳改进建议和进一步研究领域的可能总结。

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