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Hopf bifurcation analysis in a fluid flow model of Internet congestion control algorithm

机译:Internet拥塞控制算法的流体流模型中的Hopf分叉分析

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摘要

This paper focuses on the Hopf bifurcation analysis of some classes of nonlinear time-delay models, namely fluid flow models, for the Internet congestion control algorithm of TCP/AQM networks. Using tools from control and bifurcation theory, it is proved that there exists a critical value of communication delay for the stability of the network. When the delay passes through the critical value, the system loses its stability and a Hopf bifurcation occurs. Furthermore, the stability of the bifurcation and direction of the bifurcating periodic solutions are determined by applying the normal form theory and the center manifold theorem. Finally, some numerical examples are given to verify the theoretical analysis. (C) 2007 Elsevier Ltd. All rights reserved.
机译:本文主要针对TCP / AQM网络的Internet拥塞控制算法,对某些类别的非线性时滞模型(即流体模型)进行Hopf分叉分析。利用控制和分叉理论的工具,证明了通信延迟对于网络的稳定性存在着至关重要的价值。当延迟超过临界值时,系统将失去稳定性,并发生Hopf分支。此外,通过应用范式理论和中心流形定理,确定了分岔的稳定性和分岔周期解的方向。最后,通过数值算例验证了理论分析的正确性。 (C)2007 Elsevier Ltd.保留所有权利。

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