Hardware in the loop experimental validation of PID controllers tuned by genetic algorithms

L. Ángel, J. Viola, M. Vega
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引用次数: 3

Abstract

This paper presents the design of a PID controller for the speed control of a motor generator system using genetic algorithms and its practical implementation employing the hardware in the loop control scheme. The genetic algorithm is designed to find the PID controller proportional, integral, and derivate terms to achieve the desired overshoot and settling time of the motor-generator system. The practical implementation of the PID controller is performed with a data acquisition card and the Matlab Stateflow toolbox connected in hardware in the loop configuration. The proposed controller is contrasted with a PID controller tuned by the Internal Model Control technique. A robustness analysis is performed to evaluate the system response in the presence of the external disturbances. Obtained results shown that the PID controller tuned by genetic algorithm has a better response in the presence of external disturbances.
遗传算法调谐PID控制器的硬件在环实验验证
本文介绍了一种基于遗传算法的电机发电机系统速度控制PID控制器的设计,以及采用硬件在环控制方案的实际实现。利用遗传算法找到PID控制器的比例项、积分项和导数项,以实现电机-发电机系统所需的超调量和稳定时间。采用数据采集卡与Matlab statflow工具箱相连接的硬件在环组态进行了PID控制器的实际实现。所提出的控制器与由内模控制技术调谐的PID控制器进行了对比。进行了鲁棒性分析,以评估系统在存在外部干扰时的响应。结果表明,采用遗传算法整定的PID控制器在存在外部干扰时具有较好的响应性。
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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