PID Control Algorithm Based on Genetic Algorithm and its Application in Electric Cylinder Control

Geng Zhang, Xiansheng Gong, Xirui Chen
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引用次数: 5

Abstract

The traditional PID controller is simple in principle, easy to use, stable and reliable, and it is still widely used in the control field. However, for many nonlinear and lagging objects, the parameter tuning of PID controller is very important. Genetic algorithm provides a new way to optimize the parameters of PID. It uses simple coding techniques and propagation mechanisms to express complex phenomena, which is not restricted by the restriction of the search space. In this paper, the global optimization of genetic algorithm is used to optimize the parameters of PID, which can improve the performance and adaptive capability of PID controller. The mathematical model of the electric cylinder system is established, and the PID controller based on genetic algorithm is used to control the system. The simulation results verify the effectiveness of the proposed control algorithm.
基于遗传算法的PID控制算法及其在电动缸控制中的应用
传统的PID控制器原理简单,使用方便,稳定可靠,至今仍广泛应用于控制领域。然而,对于许多非线性和滞后对象,PID控制器的参数整定是非常重要的。遗传算法为PID参数优化提供了一种新的方法。它使用简单的编码技术和传播机制来表达复杂的现象,不受搜索空间的限制。本文采用遗传算法的全局优化对PID参数进行优化,提高了PID控制器的性能和自适应能力。建立了电动缸系统的数学模型,采用基于遗传算法的PID控制器对系统进行控制。仿真结果验证了所提控制算法的有效性。
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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