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Extended optimum frequency tracking scheme for ultrasonic motor

机译:超声波电机的扩展最佳频率跟踪方案

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This work presents a general optimum frequency tracking scheme for an ultrasonic motor, which no longer requires the amplitudes of the applied voltages to keep identical. The proposed scheme here greatly extends the application of the optimum frequency in comparison to the existing studies. The mechanical quality factor of an ultrasonic motor is initially derived to describe the loss, which further is also in proportion to the temperature rise. The optimum frequency from the loss reduction viewpoint is then obtained, at which frequency the ultrasonic motor maintains the minimum loss and subsequently the minimum temperature rise. The optimum-frequency tracking scheme is subsequently constructed. Experiments are carried out to verify the existence of the optimum frequency and the reduction of the temperature-rise under the applied voltages in the general form, whose amplitudes and phase difference are all adjustable. The results have inferred that the optimum frequency still exists even though the applied voltages are in the general form, at which frequency the temperature-rise is obviously reduced in the absence of any external cooling equipment. The optimum frequency of the ultrasonic motor now gets closer to the industrial applications, especially when the applications require the velocity adjustment in a wide range.
机译:该工作提出了一种用于超声波电动机的一般最佳频率跟踪方案,其不再需要施加电压的幅度以保持相同。与现有研究相比,该提出的方案大大扩展了最佳频率的应用。最初导出超声波电动机的机械质量因子以描述损耗,进一步与温度升高成比例。然后获得来自损耗降低观点的最佳频率,在此频率超声波电动机保持最小损耗并随后最小的温度升高。随后构造了最佳频率跟踪方案。进行实验以验证最佳频率和施加电压下施加电压下的温度升高的存在,其幅度和相位差全部可调。结果推断,即使施加的电压处于一般形式,也仍然存在最佳频率,在没有任何外部冷却设备的情况下,温度升高明显降低了频率。超声波电动机的最佳频率现在越来越接近工业应用,特别是当应用程序需要在宽范围内的速度调节时。

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