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Aerial display of vibrotactile sensation with high spatial-temporal resolution using large-aperture airborne ultrasound phased array

机译:使用大孔径机载超声相控阵以高时空分辨率空中显示触觉触觉

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We fabricated a tactile display which can generate vibrotactile sensation on human skin on which no equipment is mounted. It utilizes focused airborne ultrasound radiation pressure for stimulation. The workspace of our new tactile display is widened to a cube of 1 m × 1 m × 1 m, which allows users free motions in it. In order to widen the workspace, our new prototype integrates multiple ultrasound transducer units and achieves a large aperture airborne ultrasound phased array. As the workspace is widened, it has become possible to stimulate arbitrary regions all over a human body. The amplitude of imposed radiation pressure can be time-variant. The profiles of generated vibrotactile stimuli can be designed with a temporal resolution of 0.5 ms and 320-level quantization of radiation pressure amplitude. It is easy to choose a recorded waveform and reproduce it as vibrotactile stimuli at an arbitrary spatial point. This paper introduces how our new tactile display works and reports its performance evaluation.
机译:我们制造了一种触觉显示器,可以在没有安装任何设备的人皮肤上产生触觉感觉。它利用聚焦的机载超声辐射压力进行刺激。我们新的触觉显示器的工作空间扩大到1 m×1 m×1 m的立方体,使用户可以在其中自由运动。为了扩大工作空间,我们的新原型集成了多个超声换能器单元,并实现了大口径机载超声相控阵。随着工作空间的扩大,刺激整个人体的任意区域成为可能。施加的辐射压力的幅度可以随时间变化。可以以0.5 ms的时间分辨率和320级辐射压力幅度的量化设计生成的触觉刺激的轮廓。选择记录的波形并在任意空间点将其复制为触觉刺激是很容易的。本文介绍了我们的新型触觉显示器的工作原理并报告了其性能评估。

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