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首页> 外文期刊>Haptics, IEEE Transactions on >Comparison of Walking and Traveling-Wave Piezoelectric Motors as Actuators in Kinesthetic Haptic Devices
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Comparison of Walking and Traveling-Wave Piezoelectric Motors as Actuators in Kinesthetic Haptic Devices

机译:动觉触觉设备中作为执行器的步行和行波压电马达的比较

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摘要

Piezoelectric motors offer an attractive alternative to electromagnetic actuators in portable haptic interfaces: they are compact, have a high force-to-volume ratio, and can operate with limited or no gearing. However, the choice of a piezoelectric motor type is not obvious due to differences in performance characteristics. We present our evaluation of two commercial, operationally different, piezoelectric motors acting as actuators in two kinesthetic haptic grippers, a walking quasi-static motor and a traveling wave ultrasonic motor. We evaluate each gripper's ability to display common virtual objects including springs, dampers, and rigid walls, and conclude that the walking quasi-static motor is superior at low velocities. However, for applications where high velocity is required, traveling wave ultrasonic motors are a better option.
机译:压电式电动机为便携式触觉接口中的电磁致动器提供了一种有吸引力的替代方案:它们紧凑,具有高的力/体积比,并且可以在有限或无齿轮传动的情况下运行。然而,由于性能特性的差异,压电马达类型的选择并不明显。我们介绍了对两种在操作上不同的压电商业电机的评估,它们是两个运动觉触觉抓取器中的执行器,准静态行走电机和行波超声电机。我们评估了每个夹持器显示常见的虚拟物体(包括弹簧,阻尼器和刚性壁)的能力,并得出结论,在低速时,准静态行走电机性能优越。但是,对于需要高速度的应用,行波超声电机是更好的选择。

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