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Design of Robust Optimal Fractional-order PID Controller using Salp Swarm Algorithm for Automatic Voltage Regulator (AVR) System

机译:基于Salp Swarm算法的自动稳压器鲁棒最优分数阶PID控制器设计

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This paper presents a method for robust optimum tuning of Fractional-order Proportional Integral Derivative (FoPID) controller for Automatic Voltage Regulator (AVR) system. Optimal tuning of FoPID parameters for AVR system are accomplished by using Salp Swarm Algorithm (SSA) of optimization. The performance of the AVR system with FoPID controller tuned by SSA shows the robust performance against disturbances deliberated at the output of the system. To test the robustness of the system, in the presence of external disturbance $H_{infty}$ norm is considered. AVR system with SSA tuned PID controller is also simulated with MATLAB platform. Results shows that the AVR system with SSA tuned FoPID controller outperform the SSA tuned PID controller in the presence of external disturbances at output of the system and shows its disturbance rejection capabilities.
机译:本文提出了一种用于自动调压器(AVR)系统的分数阶比例积分微分(FoPID)控制器的鲁棒最优调整方法。通过使用优化的Salp Swarm算法(SSA)来实现AVR系统的FoPID参数的最佳调整。通过SSA调整的带FoPID控制器的AVR系统的性能显示出强大的性能,可抵抗在系统输出端故意产生的干扰。为了测试系统的鲁棒性,考虑存在外部干扰$ H _ {\ infty} $范数。带有SSA调整PID控制器的AVR系统也在MATLAB平台上进行了仿真。结果表明,在系统输出出现外部干扰的情况下,带有SSA调谐FoPID控制器的AVR系统优于SSA调谐PID控制器,并显示了其抗干扰能力。

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