Optimal Tuning of PID Parameters for Magnetic Ball Levitation System Using Multi-objective Evolutionary Algorithms

Görkem Melih Kıranel, B. Ataşlar-Ayyıldız
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Abstract

In this work, a PID controller tuned with the multi-objective optimization is used to realize high precision tracking control of a magnetic levitation system. For the multi-objective optimization, a cost function based on the system dynamic response criteria is proposed. The weights of the multi-objective cost function are calculated by three different optimization algorithms: PSO, ABC, and GWO. Time domain performance of the system response obtained by the simulations for these three controller are compared. In addition, the performance of the obtained controllers is examined for a different reference signal and even under the disturbance.
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基于多目标进化算法的磁悬浮系统PID参数优化整定
本文采用多目标优化调谐PID控制器实现磁悬浮系统的高精度跟踪控制。针对多目标优化问题,提出了基于系统动态响应准则的代价函数。采用PSO、ABC和GWO三种不同的优化算法计算多目标代价函数的权重。对这三种控制器的时域响应性能进行了仿真比较。此外,还对所得到的控制器在不同参考信号和干扰下的性能进行了测试。
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