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An H_∞ approach to congestion control design for AQM routers supporting TCP flows in wireless access networks

机译:一种支持无线接入网中TCP流的AQM路由器的H_∞拥塞控制设计方法

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In this paper, we aim at developing an H_∞ approach, from control-theoretic viewpoint, to the design of an active queue management (AQM) based congestion control algorithm for wireless networks supporting the Internet Protocol. We study networks in which the backbone is a traditional wired network supporting Internet TCP, while end user access is via wireless. First, a dynamic model for the congestion control problem of wireless networks is built up, which enables the application of modern control theory on time-delay systems to this problem. Second, an H_∞ design approach for general time-delay systems is presented. Finally, the proposed approach is applied to the congestion control algorithm design of wireless networks, yielding an effective and systematic way for the design problem. Simulation results are provided to illustrate the design procedure and the effectiveness of the proposed method. Our design method is described by linear matrix inequalities (LMI), which can be solved very efficiently by LMI toolbox in Matlab.
机译:在本文中,我们旨在从控制理论的角度开发一种H_∞方法,以设计一种基于主动队列管理(AQM)的拥塞控制算法,用于支持Internet协议的无线网络。我们研究的网络中,主干是支持Internet TCP的传统有线网络,而最终用户则通过无线访问。首先,建立了用于无线网络拥塞控制问题的动态模型,该模型使得现代控制理论在时延系统上的应用成为可能。其次,提出了一种通用时滞系统的H_∞设计方法。最后,将该方法应用于无线网络的拥塞控制算法设计,为设计问题提供了一种有效而系统的方法。仿真结果说明了该方法的设计过程和有效性。我们的设计方法由线性矩阵不等式(LMI)描述,可以通过Matlab中的LMI工具箱非常有效地解决。

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