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Analysis of scalable TCP congestion control algorithm

机译:可扩展TCP拥塞控制算法分析

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摘要

In recent years, several more aggressive versions of TCP have been proposed which leave the Additive Increase Multiplicative Decrease (AIMD) paradigm. The motivation is to adapt TCP to networks with very large bandwidth delay products. In this paper, we study the scalable TCP (STCP) which is designed to be a Multiplicative Increase Multiplicative Decrease (MIMD) protocol. We analyze how it shares a bottleneck link with other CBR flows. We identify conditions under which the time varying queueing delay transforms the whole multiplicative increase dynamics of the window size into an additive increase dynamics, which implies that window evolution of STCP behaves as an AIMD protocol. In addition, we analyze and derive expressions for the case of very small buffer. Finally, we validate our results using ns-2 simulations.
机译:近年来,已经提出了几种更具攻击性的TCP版本,这些版本保留了“增加增量乘以减少(AIMD)”范式。其动机是使TCP适应具有很大带宽延迟产品的网络。在本文中,我们研究了可扩展的TCP(STCP),它被设计为乘数增加乘数减少(MIMD)协议。我们分析它如何与其他CBR流共享瓶颈链路。我们确定了条件,在该条件下,时变排队延迟将窗口大小的整个乘法增加动态转换为加性增加动态,这意味着STCP的窗口演化表现为AIMD协议。此外,我们分析并推导了非常小的缓冲区情况下的表达式。最后,我们使用ns-2模拟验证我们的结果。

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