弹性分组环野蛮公平性算法的稳定性

Fredrik Davik, S. Gjessing
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引用次数: 10

摘要

弹性分组环(RPR)目前由电气和电子工程师协会(IEEE)在802.17工作组内进行标准化。RPR是一种基于“缓冲区插入”原理的基于双环的介质访问协议。与使用循环令牌控制对环的访问不同,环上的每个站点都执行分布式公平算法的部分。公平性算法的任务是确保在需求大于供给的情况下,所有电台都能获得公平的带宽份额。本文讨论了RPR公平性算法如何能够在竞争电台之间公平地分配带宽,以及正确工作的要求。我们讨论了公平性算法如何以及何时不能收敛到一个公平值,以及为了使其收敛需要什么。最后,我们证明了RPR IpCoef配置参数的设置对公平性算法的收敛至关重要,并给出了正确设置IpCoef配置参数的一些指导原则。为此,我们首先提出了一些分析工作,其中一些贡献给了RPR工作组,现在已纳入标准。我们使用非正式的“归纳法证明”来解释我们的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The stability of the resilient packet ring aggressive fairness algorithm
Resilient packet ring (RPR) is currently being standardized by the Institute of Electrical and Electronics Engineers (IEEE), within the 802.17 working group. RPR is a dual ring based medium access protocol based on the "buffer insertion" principle. Instead of controlling the access to the ring using a circulating token, each station on the ring executes its part of a distributed fairness algorithm. The task of the fairness algorithm is to ensure that all stations gets their fair share of the bandwidth, when there is more demand than supply. This article discusses how the RPR fairness algorithm is able to divide the bandwidth fairly among contending stations as well as the requirements for this to work correctly. We discuss how and when the fairness algorithm fails to converge to a fair value, and what is needed in order to make it converge. Finally we show that the setting of the RPR IpCoef configuration parameter is of crucial importance for the convergence of the fairness algorithm as well as some guidelines for setting this correctly. To do this, we first present some analytical work, of which some were contributed to the RPR working group and is now incorporated in the standard. We explain our approach using an informal "proof by induction".
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