On global stability of Internet congestion control

M. Peet, S. Lall
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引用次数: 7

Abstract

In this paper, we address the question of global asymptotic stability of TCP/AQM congestion control protocols. We analyze a well-known model, whose dynamics were previously shown to be locally stable via analysis of its linearization. We show that in fact the nonlinear dynamics are globally stable, and we explicitly account for the effects of both nonlinearities and time-delays in the dynamics. These results apply to the case of a single link with sources of identical fixed delay, and show that global stability holds under the same conditions that local stability does. The dynamic model analyzed is nonlinear, nonsmooth, and contains a delay, and the proof is based on the theory of integral-quadratic constraints.
网络拥塞控制的全局稳定性研究
本文研究了TCP/AQM拥塞控制协议的全局渐近稳定性问题。我们分析了一个众所周知的模型,其动力学先前通过分析其线性化被证明是局部稳定的。我们证明了非线性动力学实际上是全局稳定的,并且我们明确地考虑了非线性和时滞在动力学中的影响。这些结果适用于具有相同固定延迟源的单链路的情况,并表明在相同的条件下全局稳定性与局部稳定性保持一致。所分析的动力学模型是非线性的、非光滑的、包含时滞的,其证明基于积分二次约束理论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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