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Accuracy improvement of built-in torque sensing for Harmonic Drives

机译:谐波驱动器内置扭矩感应的精度提高

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摘要

Built-in torque sensing for Harmonic Drives is attractive since it maintains mechanical characteristics of the gear while providing detection of the transmitted torque. Torque sensing by using strain gauges has been studied, but is not widely used yet due to a relatively high signal fluctuation, which is generated by the gear operation. Characteristics of the signal fluctuation are analyzed in this paper, and a method to effectively compensate the signal fluctuation is proposed. The signal fluctuation is perfectly compensated by adjustment of the strain gauge sensitivities. A minimum number of strain gauges needed to compensate the signal fluctuation is derived. The experimental result with three strain gauges compensating the basic frequency component of the signal fluctuation is shown.
机译:谐波驱动器的内置扭矩感应很吸引人,因为它在保持齿轮机械特性的同时还可以检测传递的扭矩。已经研究了使用应变仪进行扭矩传感,但是由于齿轮操作所产生的信号波动较大,因此尚未得到广泛应用。分析了信号波动的特点,提出了一种有效补偿信号波动的方法。通过调节应变仪的灵敏度可以完美地补偿信号波动。得出了补偿信号波动所需的最少数量的应变仪。显示了使用三个应变仪补偿信号波动的基本频率分量的实验结果。

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