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Mathematical Model of Ultrasonic Motors for Speed Control

机译:用于速度控制的超声波马达的数学模型

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摘要

In this article, a mathematical model of ultrasonic motors for speed control, which includes the non-linearity and approximation of the dead-zone in control input, is presented. The intrinsic properties of ultrasonic motors (high torque for low speed, high static torque, compact in size, etc.) offer great advantages for industrial applications. However, the speed property of ultrasonic motors has a strong non-linear property as well as the dead-zone effect in control input associated with load torque. These properties present serious problems for accurate speed control. This article presents a mathematical model represented by a sinusoidal function, which includes these properties. The model is simple and has good approximation of the non-linearity and time varying properties. The proposed speed model has been validated by experimental results.
机译:在本文中,提出了一种用于速度控制的超声波电动机的数学模型,其中包括控制输入中的非线性和死区的近似值。超声波马达的固有特性(低速时的高转矩,高静转矩,尺寸紧凑等)为工业应用提供了很大的优势。但是,超声波马达的速度特性具有很强的非线性特性,并且在控制输入中与负载转矩相关的死区效应也很强。这些特性对于精确的速度控制提出了严重的问题。本文介绍了一个由正弦函数表示的数学模型,其中包括这些属性。该模型很简单,并且具有非线性和时变特性的良好近似。实验结果验证了所提出的速度模型。

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