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An Accurate Link Model and Its Application to Stability Analysis of FAST TCP

机译:准确的链路模型及其在快速TCP稳定性分析中的应用

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This paper presents a link model which captures the queue dynamics when congestion windows of TCP sources change. By considering both the self-clocking and the link integrator effects, the model is a generalization of existing models and is shown to be more accurate by both open loop and closed loop packet level simulations. It reduces to the known static link model when flows' round trip delays are similar, and approximates the standard integrator link model when the heterogeneity of round trip delays is significant. We then apply this model to the stability analysis of FAST TCP. It is shown that FAST TCP flows over a single link are always linearly stable regardless of delay distribution. This result resolves the notable discrepancy between empirical observations and previous theoretical predictions. The analysis highlights the critical role of self-clocking in TCP stability and the scalability of FAST TCP with respect to delay. The proof technique is new and less conservative than the existing ones.
机译:本文介绍了一个链接模型,当TCP源的拥塞窗口发生变化时,捕获队列动态。通过考虑自行计时和链路集成器效果,该模型是现有模型的泛化,并且通过开环和闭环包级模拟显示更准确。当流动的往返延迟相似时,它减少了已知的静态链路模型,并且当往返延迟的异质性显着时,近似标准积分器链路模型。然后,我们将此模型应用于快速TCP的稳定性分析。结果表明,无论延迟分布,快速TCP流过单链路始终线性稳定。该结果解决了经验观察和以前的理论预测之间的显着差异。分析突出了TCP稳定性在TCP稳定性中的关键作用以及快速TCP相对于延迟的可扩展性。证明技术是新的,而不是现有的技术。

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