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Performances estimation of a rotary traveling wave ultrasonic motor based on two-dimension analytical model

机译:基于二维解析模型的旋转行波超声电机性能评估

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The understanding of ultrasonic motor performances as a function of input parameters, such as the voltage amplitude, driving frequency, the preload on the rotor, is a key to many applications and control of ultrasonic motor. This paper presents performances estimation of the piezoelectric rotary traveling wave ultrasonic motor as a function of input voltage amplitude and driving frequency and preload. The Love equation is used to derive the traveling wave amplitude on the stator surface. With the contact model of the distributed spring-rigid body between the stator and rotor, a two-dimension analytical model of the rotary traveling wave ultrasonic motor is constructed. Then the performances of stead rotation speed and stall torque are deduced. With MATLAB computational language and iteration algorithm, we estimate the performances of rotation speed and stall torque versus input parameters respectively. The same experiments are completed with the optoelectronic tachometer and stand weight. Both estimation and experiment results reveal the pattern of performance variation as a function of its input parameters.
机译:了解超声电动机的性能与输入参数(例如电压幅度,驱动频率,转子上的预载)之间的关系,对超声电动机的许多应用和控制至关重要。本文介绍了压电旋转行波超声电机的性能估算,该估算是输入电压幅度,驱动频率和预载的函数。 Love方程用于导出定子表面上的行波振幅。利用定子与转子之间分布的弹簧刚体的接触模型,建立了旋转行波超声电机的二维解析模型。然后推导了稳态转速和失速转矩的性能。使用MATLAB计算语言和迭代算法,我们分别估计了转速和失速转矩与输入参数的性能。光电转速表和支架重量完成了相同的实验。估计和实验结果都表明性能变化的模式是其输入参数的函数。

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