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Performance of TCP congestion control with explicit rate feedback

机译:具有显式速率反馈的TCP拥塞控制的性能

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We consider a modification of TCP congestion control in which the congestion window is adapted to explicit bottleneck rate feedback; we call this RATCP (Rate Adaptive TCP). Our goal in this paper is to study and compare the performance of RATCP and TCP in various network scenarios with a view to understanding the possibilities and limits of providing better feedback to TCP than just implicit feedback via packet loss. To understand the dynamics of rate feedback and window control, we develop and analyze a model for a long-lived RATCP (and TCP) session that gets a time-varying rate on a bottleneck link. We also conduct experiments on a Linux based test-bed to study issues such as fairness, random losses, and randomly arriving short file transfers. We find that the analysis matches well with the results from the test-bed. For large file transfers, under low background load, ideal fair rate feedback improves the performance of TCP by 15%-20%. For small randomly arriving file transfers, though RATCP performs only slightly better than TCP it reduces losses and variability of throughputs across sessions. RATCP distinguishes between congestion and corruption losses, and ensures fairness for sessions with different round trip times sharing the bottleneck link. We believe that rate feedback mechanisms can be implemented using distributed flow control and recently proposed REM in which case, ECN bit itself can be used to provide the rate feedback.
机译:我们考虑TCP拥塞控制的一种修改,其中拥塞窗口适用于显式的瓶颈速率反馈。我们称其为RATCP(速率自适应TCP)。本文的目的是研究和比较RATCP和TCP在各种网络情况下的性能,以了解为TCP提供更好的反馈的可能性和局限性,而不只是通过数据包丢失的隐式反馈。为了了解速率反馈和窗口控制的动态,我们开发并分析了一个长期存在的RATCP(和TCP)会话的模型,该模型在瓶颈链路上获得时变速率。我们还在基于Linux的测试平台上进行实验,以研究诸如公平性,随机丢失和随机到达的短文件传输之类的问题。我们发现分析与测试台的结果非常吻合。对于大型文件传输,在低背景负载下,理想的公平速率反馈可将TCP性能提高15%-20%。对于小的随机到达的文件传输,尽管RATCP的性能仅比TCP稍好,但它减少了会话之间的丢失和吞吐量变化。 RATCP区分拥塞和腐败损失,并确保具有往返时间的会话的公平性共享瓶颈链路。我们相信速率反馈机制可以使用分布式流控制和最近提出的REM来实现,在这种情况下,ECN位本身可以用于提供速率反馈。

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