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超声摩擦调制触觉接口的功率优化

Power optimization of ultrasonic friction-modulation tactile interfaces.

作者信息

Wiertlewski Michael, Colgate J Edward

出版信息

IEEE Trans Haptics. 2015 Jan-Mar;8(1):43-53. doi: 10.1109/TOH.2014.2362518. Epub 2014 Oct 9.

Abstract

Ultrasonic friction-modulation devices provide rich tactile sensation on flat surfaces and have the potential to restore tangibility to touchscreens. To date, their adoption into consumer electronics has been in part limited by relatively high power consumption, incompatible with the requirements of battery-powered devices. This paper introduces a method that optimizes the energy efficiency and performance of this class of devices. It considers optimal energy transfer to the impedance provided by the finger interacting with the surface. Constitutive equations are determined from the mode shape of the interface and the piezoelectric coupling of the actuator. The optimization procedure employs a lumped parameter model to simplify the treatment of the problem. Examples and an experimental study show the evolution of the optimal design as a function of the impedance of the finger.

摘要

超声波摩擦调制装置可在平面上提供丰富的触觉感受,并且有可能恢复触摸屏的触感。迄今为止,它们在消费电子产品中的应用在一定程度上受到相对较高功耗的限制,这与电池供电设备的要求不兼容。本文介绍了一种优化此类设备能量效率和性能的方法。它考虑了向与表面相互作用的手指所提供的阻抗进行最佳能量传输。本构方程由界面的模态形状和致动器的压电耦合确定。优化过程采用集总参数模型来简化问题的处理。实例和实验研究表明了最佳设计随手指阻抗的变化情况。

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