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An Observer-Based Controller for Congestion Control in Data Networks

机译:基于观察者的数据网络中拥塞控制的控制器

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This paper investigates the design of an observer-based controller to overcome the congestion problem in the TCP/IP networks where the available link bandwidth is modeled as a time-variant disturbance. Then, a detailed description is discussed to establish a linearized mathematical model in order to ensure the robust stability of the saturated delayed system and satisfy the H_∞ performance. Based on a Lyapunov-Krasovskii (L-K) functional, a generalized sector condition, and the Finsler's Lemma, the proposed new design methodology leads to a quite simple LMI condition that is numerically tractable with any convex optimization algorithm. An effective iterative optimization algorithm is adopted to estimate the largest possible region of initial conditions as will be seen in the numerical examples where the results are compared to PI, RED, and REM controllers.
机译:本文调查了基于观察者的控制器的设计,以克服可用链路带宽被建模为时变干扰的TCP / IP网络中的拥塞问题。 然后,讨论详细描述以建立线性化的数学模型,以确保饱和延迟系统的稳定稳定性并满足H_∞性能。 基于Lyapunov-Krasovskii(L-K)功能,广义扇区状况和芬德勒的引理,所提出的新设计方法导致了一个相当简单的LMI条件,这些条件是以任何凸优化算法的数值易行的。 采用有效的迭代优化算法来估计最大可能的初始条件区域,如将在与PI,RED和REM控制器进行比较的数值示例中所见的最大可能区域。

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