Fuzzy PID Control of Ultrasonic Motor Based on Improved Gravitational Search Algorithm

Yongquan Zhao, Yao Yao, Xin-jie Wang, Yu-juan Tang, Si-yuan Huang
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引用次数: 1

Abstract

In this paper, a fuzzy PID controller is designed to control the ultrasonic motor for its nonlinear and time-varying characteristics during operation, and a gravitational search algorithm is used to optimize the parameters of the fuzzy PID controller to improve the performance of the system. To address the problem that the gravitational search algorithm is prone to fall into premature maturity, this paper adds a mutation operation to the gravitational search algorithm to improve the diversity of the population and enhance the global search capability of the algorithm. The simulation results show that the improved gravitational search algorithm improves the phenomenon that the gravitational search algorithm is prone to prematureness and improves the global search capability and convergence performance of the algorithm. Meanwhile, the dynamic and steady-state performance of the ultrasonic motor system is significantly improved by the fuzzy PID controller based on the improved gravitational search algorithm compared with the fuzzy PID controller.
基于改进引力搜索算法的超声电机模糊PID控制
针对超声电机在运行过程中的非线性和时变特性,设计了模糊PID控制器对其进行控制,并采用引力搜索算法对模糊PID控制器的参数进行优化,以提高系统的性能。针对引力搜索算法容易陷入早熟的问题,本文在引力搜索算法中加入突变操作,提高种群的多样性,增强算法的全局搜索能力。仿真结果表明,改进的引力搜索算法改善了引力搜索算法容易早熟的现象,提高了算法的全局搜索能力和收敛性能。同时,与模糊PID控制器相比,基于改进引力搜索算法的模糊PID控制器显著改善了超声电机系统的动态和稳态性能。
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