基于组合的超声电机控制选择策略

Jingting Yao, Matthew R. Abreu, S. Chakravarty
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引用次数: 0

摘要

超声电机(USM)是一种新型的高精度定位驱动系统。与传统的电磁电机相比,它们具有显著的优势,如快速控制,高扭矩,低电磁干扰和重量轻。然而,由于超声电机采用摩擦和逆压电现象作为驱动机制,其非线性复杂,难以建立精确的数学模型。这些非线性特性对电机的精确位置控制提出了重要的问题。因此,之前的研究建议开发控制设计,使用复杂的非线性控制方案,如滑模控制(SMC),与先进的机器学习算法(如遗传算法)相结合。实现这些方法的缺点是计算成本和复杂性。本文提出了一种新的USM控制模式。我们将问题分为两个互补的部分,即电机参数的估计和基于估计结果的控制器设计。根据应用的精度要求,估计过程可以是非线性和/或时变的。同样,基于可承受的计算复杂度,我们可以选择线性或非线性控制器。所进行的实验结果显示了这些不同类别的比较性能。根据用户的要求,建议适当组合它们的指导方针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A combination based control selection strategy for ultrasonic motor
Ultrasonic motors (USM) are a new type of high precision positioning drive system. They provide significant advantages compared to traditional electromagnetic motors like fast control, high torque, low electromagnetic interference and light weight. It is however difficult to formulate exact mathematical model of the ultrasonic motor due to complex nonlinearities involved as a result of its use of friction and inverse piezoelectric phenomena as its driving mechanism. These nonlinearities pose significant problem for precise position control of the motor. Previous research have therefore suggested developing control design using elaborate nonlinear control schemes like Sliding Mode Control (SMC) used in tandem with advanced machine learning algorithms like genetic algorithms. The drawback of implementing these approaches is the computational cost and complexity involved. In this paper we present a new schema for control of USM. We divide the problem into two complementary parts, namely estimation of the motors parameters and controller design based on the estimator result. Depending on the precision requirement of the application the estimation process can be made nonlinear and /or time varying. Similarly based on the affordable computational complexity, we can choose a linear or a nonlinear controller. Results of experiments conducted show the comparative performance of these different categories. Guidelines are suggested for suitable combination of them depending upon a user's requirement.
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