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Stochastic Ordering for Internet Congestion Control and its Applications

机译:随机排序互联网拥塞控制及其应用

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Window growth function for congestion control is a strong determinant of protocol behaviors, especially its second and higher-order behaviors associated with the distribution of transmission rates, its variances, and protocol stability. This paper presents a new stochastic tool, called convex ordering, that provides an ordering of any convex function of transmission rates of two protocols and valuable insights into high order behaviors of protocols. As the ordering determined by this tool is consistent with any convex function of rates, it can be applied to any unknown metric for protocol performance that consists of some high-order moments of transmission rates, as well as those already known such as rate variance. Using the tool, it is analyzed that a protocol with a growth function that starts off with a concave function and then switches to a convex function (e.g., an odd order function such as x~(3) and x~(5)) around the maximum window size in the previous loss epoch, gives the smallest rate variation under a variety of network conditions. Among existing protocols, BIC and CUBIC have this window growth function. Experimental and simulation results confirm the analytical findings.
机译:拥塞控制的窗口生长函数是协议行为的强烈决定因素,特别是其与传输速率分布的第二和高阶行为,其差异和协议稳定性相关。本文介绍了一种名为Convex Ordering的新的随机工具,提供了两种协议的传输速率的任何凸起函数的排序,以及对协议的高阶行为的有价值的见解。随着该工具确定的顺序与速率的任何凸起函数一致,可以应用于协议性能的任何未知度量,该协议性能包括一些高阶的传输速率的瞬间,以及已经已知的诸如速率方差的那些。使用该工具,分析具有使用凹函数开始关闭的增长函数的协议,然后切换到凸起函数(例如,奇数顺序函数,例如x〜(3)和x〜(5))先前损耗时代的最大窗口大小,在各种网络条件下提供了最小的速率变化。在现有协议中,BIC和CUBic具有此窗口的增长函数。实验和仿真结果证实了分析结果。

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