不同负载条件下行波超声电机的速度/位置控制新技术

A. Gencer
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引用次数: 10

摘要

由于技术的快速发展,出现了新的应用,要求高效率的速度控制和高效率的位置控制。因此,行波超声电机作为一种重要的位置控制和速度控制执行器,近年来受到了广泛的关注。转子转速与TWUSM的不同负载特性之间不是线性关系。为了解决TWUSM的非线性和变化问题,本文提出并实现了比例积分(PI)控制器、比例积分导数(PID)控制器、频率控制器和相位差控制器,用于位置控制和转子转速控制。有许多速度控制技术,如频率控制,外加电压相位差控制,外加电压幅值控制。除了这些控制技术提高了系统的效率外,我们还需要设计利用TWUSM位置控制的控制技术。为此,我们利用控制系统技术,如控制器和补偿技术。该系统采用PID控制器、频率控制器和相位差控制器来评估TWUSM驱动系统的稳态性能。对所得到的仿真结果进行了分析和比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new speed/position control technique for travelling wave ultrasonic motor under different load conditions
Due to the rapid development of technology, the new applications are occurring into presence which request high efficient speed control and high efficient position control. So, travelling wave ultrasonic motors (TWUSM) have been drawn attention as important actuators for position control and speed control applications of late years. The relationship between rotor speed and different load behaviours of the TWUSM is not linear. In order to solve this nonlinearities and variation problems of TWUSM, proportional-integral (PI) controller, proportional integral-derivative (PID) controller, frequency controller and phase difference controller are proposed and implemented for position control and rotor speed control in this study. There are many speed control techniques such as frequency control, applied voltage phase difference control, applied voltage amplitude control. Besides these control techniques increase the efficiency of the system, we required to design control techniques which using TWUSM position control. For this we make use of the control system techniques such as controllers and compensation techniques. The proposed system evaluates the steady-state performance of TWUSM driver system by using PID controller, frequency controller, and phase difference controller. The obtained simulation results of the proposed technique are analyzed and presented with comparisons.
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