椭圆压电电机:模糊建模与控制

F. Gharibnezhad, A. M. Shahri
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引用次数: 2

摘要

压电电机的应用发展迅速。研究人员之所以对这些电机感兴趣,是因为它们具有相当大的特性,例如它们的大小和输出扭矩。对这些电机进行研究,建立其行为模型并进行相应的控制是十分重要的。本文的目的是提出一种适用于超声电机的椭圆电机模型,以及一种智能调速算法。该控制算法基于自适应内模控制(IMC)结构的电机模糊逆模型。根据实验数据,采用Takagi-Sugeno方法提取模型。采用基于可分解模糊系统实现的电机逆模型作为控制结构的主要部分。仿真结果验证了所提控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elliptec Piezo electric motor: Modeling and control using fuzzy approaches
Application of Piezo electric based motor is growing rapidly. Researchers are interested to focus on these motors because of their considerable characteristics such as their size and output torques. It is vital to study and research on these motors to model their behaviors and control them accordingly. The aim of this paper is to present a suitable model of an ultrasonic motor, Elliptec, and also an intelligent speed control algorithm. The proposed control algorithm is based on fuzzy inverse model of the motor in an adaptive Internal Model Control (IMC) structure. The model is extracted according to experimental data using Takagi-Sugeno approach. The inverse model of the motor which is realized based on decomposable fuzzy systems is applied as the main part of the control structure. The performance of the proposed control method is demonstrated using simulation results.
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