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Design of adaptive backstepping congestion controller for TCP networks with UDP flows based on minimax

机译:基于MIMIMAX的UDP流动的TCP网络自适应BACKSTEPPING拥堵控制器的设计

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摘要

The congestion control problem of TCP network systems with user datagram protocol (UDP) flows is investigated in this paper. A nonlinear TCP network model with strict-feedback structure is first established. The unknown UDP flow is regarded as the external disturbance, and the maximum UDP flow is calculated by using the minimax approach. And then, a congestion control algorithm is proposed by using the adaptive backstepping approach. Meanwhile, the adaptive law is employed to estimate the unknown link capacity. The design of the adaptive law is to introduce a parameter mapping mechanism to limit the parameter identification range to a specified interval, thereby improving the estimation efficiency of the parameters. Furthermore, a state-feedback congestion controller is presented to make sure that the output of the system tracks the desired queue. The simulation results show the superiority and feasibility of the proposed method. (C) 2019 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文研究了具有用户数据报协议(UDP)流量的TCP网络系统的拥塞控制问题。首先建立具有严格反馈结构的非线性TCP网络模型。未知的UDP流量被视为外部干扰,并且通过使用MIMIMAX方法来计算最大UDP流。然后,通过使用自适应反向插入方法提出拥塞控制算法。同时,采用自适应定律来估计未知的联系能力。自适应定律的设计是引入参数映射机制,以将参数识别范围限制为指定的间隔,从而提高参数的估计效率。此外,提出了一种状态反馈拥塞控制器以确保系统的输出跟踪所需的队列。仿真结果显示了所提出的方法的优越性和可行性。 (c)2019 ISA。 elsevier有限公司出版。保留所有权利。

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