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Robust global stability to delays of a multi-path dual congestion control algorithm

机译:对多路径双重拥塞控制算法的延迟具有鲁棒的全局稳定性

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摘要

Global stability has been shown for network congestion control algorithms in the absence of propagation delays by use of the conventional Lyapunov function method. When heterogeneous delays are taken into account, this problem becomes harder and is partly answered until the latest work of Papachristodoulou et al., where a Lyapunov-Krasovskii functional argument is used to analyze global stability of nonlinear congestion control algorithms, but only applicable to the single-path case. In this paper, we develop a new multi-path extension to the dual algorithm in the presence of delays. By finding a reasonable Lyapunov-Krasovskii functional candidate, usually difficult to do in a constructive way, we establish a new sufficient condition for robust global stability to delays, which includes Papachristodoulou's as a special case. Finally, we verify the results through simulations.
机译:通过使用传统的Lyapunov函数方法,在没有传播延迟的情况下,网络拥塞控制算法具有全局稳定性。当考虑到异构延迟时,这个问题将变得更加棘手,直到Papachristodoulou等人的最新工作(Lyapunov-Krasovskii函数自变量用于分析非线性拥塞控制算法的全局稳定性)之后,部分问题才能得到解决,但仅适用于单路径情况。在本文中,我们在存在延迟的情况下为双重算法开发了一种新的多路径扩展。通过找到通常很难以建设性方式完成的合理的Lyapunov-Krasovskii函数候选者,我们为健壮的全局稳定性(对于延误)建立了新的充分条件,其中包括Papachristodoulou's作为特例。最后,我们通过仿真验证结果。

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