最坏情况加权公平排队的最大速率控制

Jeng-Farn Lee, Yeali S. Sun, Meng Chang Chen
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引用次数: 4

摘要

由于各种原因,共享信道中的最大速率控制对服务提供商和运营商非常重要。以前的方法要么使用调节器和调度器的连接,它使用两组队列和两个管理系统,要么在调度器前面使用策略。前者需要额外的缓冲空间和较高的开销,后者导致不准确。本文提出了一种新的调度算法WF/sup 2/Q-M(带最大速率控制的最坏情况公平加权公平排队),以同时支持最大速率控制和提供最小服务速率保证。WF/sup 2/Q- m采用类似WF/sup 2/Q的调度器,没有策略或调节器,旨在以低开销提供准确的调度。我们证明了在WF/sup 2/Q-M中,数据包的合格时间可以合并到它的虚拟开始时间中,并提出了虚拟时钟调整,将饱和会话的多余带宽分配给其他会话,而无需重新计算它们的虚拟开始和结束时间。我们还证明了WF/sup 2/Q-M的性能在理论上受到流体参考模式的限制,实验表明WF/sup 2/Q-M的性能与所宣称的完全一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On maximum rate control of worst-case weighted fair queueing
Maximum rate control in a shared channel is important to service providers and carriers for various reasons. Previous approaches either used a concatenation of regulator and scheduler, which employs two set of queues and two management systems, or a policer in front of scheduler. The former requires extra buffer space and high overhead, and the latter causes inaccuracy. In this paper, we propose a new scheduling algorithm, called WF/sup 2/Q-M (worst-case fair weighted fair queueing with maximum rate control), to simultaneously support maximum rate control and provide minimum service rate guarantee. WF/sup 2/Q-M employs a WF/sup 2/Q like scheduler without policer or regulator that it is designed to provide accurate scheduling with low overhead. We prove that in WF/sup 2/Q-M the packet's eligible time can be merged into its virtual starting time, and propose virtual clock adjustment to distribute the excess bandwidth of saturated sessions to other sessions without recalculating their virtual starting and finishing times. We also prove that WF/sup 2/Q-M performance is theoretically bounded by a fluid reference mode, and experiments show WF/sup 2/Q-M performs just as claimed.
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