Fractional-Order Fuzzy PID Contouring Control for a VCMs-Based X-Y Motion Stage

Syuan-Yi Chen, He Lin, Meng Yang, Zong-Yue Shen
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引用次数: 3

Abstract

The object of this study is to develop a fractional-order fuzzy proportional-integral-derivative (FOFPID) control system for controlling the mover position of a voice coil motors (VCMs)-based x-y motion stage. First, the operating principle and dynamics of the VCMs-based x-y motion stage are analyzed. Then, a design of the fractional-order proportional-integral-derivative (FOPID) control system is introduced on the basis of the fractional calculus. With the additional degree of freedom to the control parameters, the FOPID controller can upgrade the contouring performance levels of the conventional proportional-integral-derivative (PID) controller in transient and steady-state responses with respect to the dynamic of the VCMs-based x-y motion stage. To further improve the control response of the FOPID controller, the FOFPID control system is thus designed by integrating a fuzzy logic controller. Finally, to evaluate and compare the contouring performances of the PID, FOPID, FOFPID control systems, two test conditions are provided which are the nominal condition and payload condition. Experimental results demonstrated that the developed FOFPID controller outperforms conventional PID and FOPID controllers with regard to the VCM-based x-y motion stage under both conditions. The good stability and smoothness against to the parameter variations of the FOFPID can also be observed clearly.
基于vcms的X-Y运动平台分数阶模糊PID轮廓控制
本研究的目的是开发一种分数阶模糊比例积分导数(FOFPID)控制系统,以控制音圈马达(vcm)的x-y运动平台的运动位置。首先,分析了基于vcms的x-y运动平台的工作原理和动力学特性。然后,介绍了基于分数阶微积分的分数阶比例-积分-导数控制系统的设计。通过对控制参数的额外自由度,FOPID控制器可以提升传统比例积分导数(PID)控制器在瞬态和稳态响应中的轮廓性能水平,相对于基于vcm的x-y运动平台的动态。为了进一步提高FOFPID控制器的控制响应,通过集成模糊逻辑控制器设计了FOFPID控制系统。最后,为了评价和比较PID、FOPID、FOFPID控制系统的轮廓性能,给出了标称条件和有效载荷条件两种测试条件。实验结果表明,在两种情况下,基于vcm的x-y运动阶段,所开发的FOFPID控制器都优于传统PID和FOPID控制器。还可以清楚地观察到FOFPID对参数变化具有良好的稳定性和平滑性。
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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