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On the throughput analysis of rate-based and window-based congestion control schemes

机译:基于速率和基于窗口的拥塞控制方案的吞吐量分析

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The existing TCP protocols contribute to the stability of the Internet by deploying window-based additive-increase multiplicative-decrease (AIMD) congestion control. However, the window-based congestion control is not favorable in the existence of long propagation delay and for real-time multimedia traffic. Thus, the rate-based congestion control has become an attractive alternative for the links with high delay and for multimedia flows. In this paper, an analysis of the rate-based generic AIMD congestion control scheme is presented. The analytical model is validated via simulation experiments for a wide range of link conditions and the effects of rate-increase and decrease parameters on the performance are investigated. One important result of this analysis is that throughput performance of the rate-based schemes is inversely proportional to square-root of the propagation delay whereas that of the window-based schemes is known to be inversely proportional to the propagation delay itself. This result also justifies that the rate-based congestion control schemes have higher resilience to the high link delay than the window-based schemes.
机译:现有的TCP协议通过部署基于窗口的加减乘积(ADMD)拥塞控制,为Internet的稳定性做出了贡献。但是,基于窗口的拥塞控制在存在长传播延迟和实时多媒体流量的情况下是不利的。因此,基于速率的拥塞控制已成为具有高延迟的链路和多媒体流的有吸引力的替代方案。本文对基于速率的通用AIMD拥塞控制方案进行了分析。通过仿真实验验证了该分析模型的广泛链接条件,并研究了速率增加和减少参数对性能的影响。该分析的一个重要结果是,基于速率的方案的吞吐量性能与传播延迟的平方根成反比,而基于窗口的方案的吞吐量性能与传播延迟本身成反比。该结果还证明,与基于窗口的方案相比,基于速率的拥塞控制方案对高链路延迟具有更高的弹性。

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