Optimizing the PID Controller by Using the Genetic Algorithm

M. Abdurrahman, Moamer Abdullbagi Omer Nourain, Mohammed Omer Abdulsalam Muhieeddeen, Omer Hafiz ALnour Mahjoub, Manareldeen Adil Hassan Ahmed
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Abstract

This paper aims to develop a Proportional Integral Derivative (PID) controller for the Automatic Voltage Regulator (AVR) of the Synchronous Generator, Automatic Voltage Regulator is responsible for keeping the output voltage of the Generator constant and stable. The Automatic Voltage Regulator system can be represented by a fourth order Transfer Function. The parameters of the controller are evaluated by using the Genetic Algorithm tuning method, for this method the Genetic Algorithm Optimization toolbox in MATLAB is used. A PID controller and a PID Filter controller are developed in order to come up with the optimum controller design for the system. The performance of the Genetic Algorithm based controller has been compared with the classical Ziegler-Nichols based controller. The results show that the Genetic Algorithm based controller outperforms the Ziegler-Nichols based controller, the optimum controller design is achieved by the GA based PID filter controller.
采用遗传算法对PID控制器进行优化
本文的目的是为同步发电机的自动调压器(AVR)开发一种比例积分导数(PID)控制器,自动调压器负责保持发电机输出电压的恒定和稳定。自动调压系统可以用四阶传递函数来表示。采用遗传算法整定方法对控制器的参数进行评估,该方法利用了MATLAB中的遗传算法优化工具箱。设计了PID控制器和PID滤波控制器,给出了系统的最优控制器设计。将基于遗传算法的控制器与经典的齐格勒-尼科尔斯控制器的性能进行了比较。结果表明,基于遗传算法的控制器优于基于Ziegler-Nichols的控制器,通过基于遗传算法的PID滤波器控制器实现了控制器的最优设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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