Maintaining flow isolation in work-conserving flow aggregation

J. Cobb, Zhe Xu
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引用次数: 7

Abstract

In order to improve the scalability of scheduling protocols with bounded end-to-end delay, much effort has focused on reducing the amount of per-flow state at routers. One technique to reduce this state is flow aggregation, in which multiple individual flows are aggregated into a single aggregate flow. In addition to reducing per-flow state, flow aggregation has the advantage of a per-hop delay that is inversely proportional to the rate of the aggregate flow, while in the case of no aggregation, the per-hop delay is inversely proportional to the (smaller) rate of the individual flow. Flow aggregation in general is non-work-conserving. Recently, a work-conserving flow aggregation technique has been proposed. However, it has the disadvantage that the end-to-end delay of an individual flow is related to the burstiness of other flows sharing its aggregate flow. Here, we show how work-conserving flow aggregation may be performed without this drawback, that is, the end-to-end delay of an individual flow is independent of the burstiness of other flows.
在节省工作的流聚合中保持流隔离
为了提高端到端有界延迟调度协议的可扩展性,人们在减少路由器上的每流状态数量方面做了大量的工作。减少这种状态的一种技术是流聚合,其中多个单独的流聚合为单个聚合流。除了减少每流状态外,流聚合的优点是每跳延迟与聚合流速率成反比,而在没有聚合的情况下,每跳延迟与单个流(较小)的速率成反比。一般来说,流量聚合是不节省功的。最近,人们提出了一种节省工作的流聚合技术。然而,它的缺点是单个流的端到端延迟与共享其聚合流的其他流的突发性有关。在这里,我们展示了如何在没有这个缺点的情况下执行节省工作的流聚合,即单个流的端到端延迟与其他流的突发性无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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