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Design of Congestion Controller for ATM Networks via Adaptive Control Law

机译:基于自适应控制律的ATM网络拥塞控制器设计

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Proportional control methods of controlling congestion in high speed ATM networks fail to achieve the desired performance due to the action delays, nonlinearities, and uncertainties in control loop. In this paper an adaptive minimum variance controller is proposed to minimize the rate of stochastic inputs from uncontrollable high priority sources. This method avoids the computations needed for pole placement design of the minimum variance controller, and utilizes an online recursive least squares algorithm in direct tuning of the controller parameters. The closed loop system is adaptive and robust to the uncertain network conditions and provides minimum cell loss ratio, efficient use of network resources, and fair allocation of the available bandwidth through the controlled sources.
机译:由于动作延迟,非线性和控制回路中的不确定性,控制高速ATM网络中拥塞的比例控制方法无法实现所需的性能。在本文中,提出了一种自适应最小方差控制器,以最小化来自不可控制的高优先级源的随机输入的速率。该方法避免了最小方差控制器的极点布置设计所需的计算,并且在直接调整控制器参数时利用了在线递归最小二乘算法。闭环系统对不确定的网络条件具有适应性和鲁棒性,并提供最小的信元丢失率,有效利用网络资源以及通过受控源公平分配可用带宽。

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