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DYNAMIC SURFACE ASYMPTOTIC CONGESTION TRACKING CONTROL FOR TCP/AQM SYSTEMS

机译:DYNAMIC SURFACE ASYMPTOTIC CONGESTION TRACKING CONTROL FOR TCP/AQM SYSTEMS

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摘要

To deal with the Active Queue Management (AQM) problem, this paper aims to develop a dynamic surface asymptotic control technique for a Transmission Control Protocol (TCP) network. The designed control law for a TCP/AQM nonlinear model can be utilized to handle the congestion tracking problem based on this technique. A nonlinear stabilizing feedback congestion controller is also proposed, which uses the dynamic surface asymptotic control scheme to ensure that the queue length can track the reference queue length and that the window size is stable. In the MATLAB environment, the developed control design is validated. The simulation results are used to verify the effectiveness of the suggested control, which is then compared to a backstepping-like controller and an integral sliding mode controller. Additionally, they show that the proposed technique can handle the desired congestion tracking control problem while also improving transient performance.

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