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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Swarm intelligence based robust active queue management design for congestion control in TCP network
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Swarm intelligence based robust active queue management design for congestion control in TCP network

机译:基于群体智能的稳健主动队列管理设计用于TCP网络中的拥塞控制

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摘要

Active queue management (AQM) is an effective solution for the congestion control problem. It can achieve high quality of service (QoS) by reducing the packet dropping probability and network utilization. Three robust control algorithms are proposed in this paper in order to design robust AQM schemes: conventional H controller, robust particle swarm optimization (PSO)-based PID (proportional-integral-derivative) (PSOPID) controller, and robust ant-colony optimization (ACO)-based PID (ACOPID) controller. PSO and ACO methods are used to tune the PID controller parameters subject to H constraints to achieve the required robustness of the network. Robust PSOPID and ACOPID controllers can achieve desirable time-response specifications with a simple design procedure and low-order controller in comparison to the conventional H controller. Wide ranges of system parameters change are used to show the robustness of the designed controllers. The ability of the designed controllers to meet the specified performance is demonstrated using MATLAB 7. 11, (R2010b): The MathWorks, Inc.3 Apple Hill Drive Natick, MA USA. On the other hand, to verify the effectiveness of the designed controller, nonlinear simulation is performed using the NS2 package. Finally, it is shown by comparison that the proposed robust ACOPID can achieve more desirable performance than the PSOPID controller and the controllers that have been proposed in previous works. (c) 2016 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:主动队列管理(AQM)是解决拥堵控制问题的有效解决方案。它可以通过减少数据包删除概率和网络利用来实现高质量的服务(QoS)。本文提出了三种强大的控制算法,以设计鲁棒的AQM方案:常规H控制器,稳健的粒子群优化(PSO)基于PID(比例 - 综合衍生物)(PSOPID)控制器(PSOPID)控制器和可靠的抗恒星优化(基于ACO)的PID(尖)控制器。 PSO和ACO方法用于调整受H约束约束的PID控制器参数,以实现网络所需的鲁棒性。与常规H控制器相比,强大的psopid和apopid控制器可以通过简单的设计程序和低阶控制器实现理想的时间响应规范。系统参数的范围更改用于显示设计控制器的鲁棒性。使用MATLAB 7证明了设计控制器达到指定性能的能力。另一方面,为了验证设计控制器的有效性,使用NS2软件包执行非线性仿真。最后,通过比较表明,所提出的强质质体可以比PSOPID控制器和先前作品中提出的控制器实现更理想的性能。 (c)2016年日本电气工程师研究所。由John Wiley&Sons,Inc。出版

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