Simulation of Liquid Level Cascade Control System Based on Genetic Fuzzy PID

Jizhi Mao, Zhijia Yang, Shusheng Zhang
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引用次数: 1

Abstract

The model design and basic principle of liquid level control system are described. In order to improve the dynamic response of liquid level control, the overshoot and steady-state error accuracy of the system are improved. In this paper, we apply the conventional PID controller to the single-loop system and the cascade system respectively, and introduce the fuzzy control algorithm based on the conventional PID control algorithm to design a cascade parameter self-adjusting fuzzy PID controller, Then use genetic algorithm to optimize fuzzy control rules to generate genetic fuzzy PID controller. The MATLAB/Simulink simulation results show that, compared with the traditional PID control, the genetic fuzzy PID control has better control effect and anti-interference ability, and has good control performance.
基于遗传模糊PID的液位串级控制系统仿真
介绍了液位控制系统的模型设计和基本原理。为了改善液位控制的动态响应,提高了系统的超调量和稳态误差精度。本文将传统的PID控制器分别应用于单回路系统和串级系统,在传统PID控制算法的基础上引入模糊控制算法,设计串级参数自整定模糊PID控制器,然后利用遗传算法对模糊控制规则进行优化,生成遗传模糊PID控制器。MATLAB/Simulink仿真结果表明,与传统PID控制相比,遗传模糊PID控制具有更好的控制效果和抗干扰能力,具有良好的控制性能。
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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