Hasegawa Keisuke, Shinoda Hiroyuki
IEEE Trans Haptics. 2018 Jan 30. doi: 10.1109/TOH.2018.2799220.
In this paper, we report on an airborne vibrotactile display with a multiunit ultrasound phased array synthetic aperture. The system generates an ultrasound field with a location-tunable focus in the air, which exerts time-variant acoustic radiation pressure on the user's skin, resulting in perceivable localized vibrotactile stimuli. The paper contains three major new contributions from previous related works. The first is an experimental validation of large-aperture focusing with improved synchronization offering an enlarged workspace in which sufficient acoustic power concentration is guaranteed. From the experiments, it is expected that perceivable vibrotactile focus can be generated 1 m away from a four-unit array system. The second is an experimental evaluation of the presented pressure for producing a broad variety of tactile perception, which shows that the generated ultrasound focus can serve as an vibrotactile actuator that has flat frequency characteristics in the domain of perceptual stimuli. The third is a psychophysical result of the detection threshold curve for sinusoidal stimuli offered by the system. The obtained curve shows similarity with conventionally known results, which have minimum values at approximately 200 Hz.
在本文中,我们报告了一种具有多单元超声相控阵合成孔径的机载振动触觉显示器。该系统在空气中产生一个焦点位置可调的超声场,该超声场对用户皮肤施加时变声辐射压力,从而产生可感知的局部振动触觉刺激。本文包含了相对于先前相关工作的三项主要新贡献。第一是通过改进同步对大孔径聚焦进行实验验证,从而提供一个扩大的工作空间,在其中保证有足够的声功率集中。从实验中可以预期,在距离四单元阵列系统1米远的地方能够产生可感知的振动触觉焦点。第二是对所呈现的用于产生多种触觉感知的压力进行实验评估,这表明所产生的超声焦点可以用作在感知刺激领域具有平坦频率特性的振动触觉致动器。第三是该系统提供的正弦刺激检测阈值曲线的心理物理学结果。所获得的曲线与传统已知结果相似,在大约200赫兹处具有最小值。