Optimization of basic PID control algorithm based on genetic algorithm and Matlab

Yingjie Ma
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Abstract

This paper investigates how to optimize the basic PID algorithm by using population genetic forms. "In traditional PID control, the tuning of PID parameters mostly relies on the experience of the tuner. The main purpose of this paper is to use an algorithm that can automatically tune its parameters to self-tune a PID controller for an actual model." Based on the principle of genetic algorithm, this paper compares the traditional PID controller tuning methods to study the trend of the PID parameters during the iteration process as well as the trend of the PID controller adaptability. Through the principle of the algorithm and the iterative output, as well as in the code set the weights occupied by different performance indicators, it can not only flexibly adjust the degree of adaptation and make the algorithm more flexible, but also prove that the use of genetic algorithms for the rectification of the PID is more adaptable and convenient, with promising research prospects
基于遗传算法和 Matlab 的基本 PID 控制算法优化
本文研究如何利用群体遗传形式优化基本 PID 算法。"在传统的 PID 控制中,PID 参数的调整大多依赖于调整者的经验。本文的主要目的是利用一种可以自动调整参数的算法,对实际模型的 PID 控制器进行自我调整"。本文基于遗传算法原理,对比传统的 PID 控制器调谐方法,研究迭代过程中 PID 参数的变化趋势以及 PID 控制器适应性的变化趋势。通过算法原理和迭代输出,以及在代码中设置不同性能指标所占的权重,不仅可以灵活调整适应度,使算法更加灵活,而且证明了利用遗传算法对PID进行整定的适应性更强、更方便,具有广阔的研究前景
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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