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Confinement of Vibrotactile Stimuli in Narrow Plates: Principle and Effect of Finger Loading

机译:窄板中振动触觉刺激的限制:手指装载的原理和效果

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摘要

On a touch surface, providing a local vibrotactile feedback enables multiuser and multitouch interactions. While the vibration propagation usually impedes this localization, we show in this article that narrow strip-shaped plates constitute waveguides in which bending waves below a cut-off frequency do not propagate. We provide a theoretical explanation of the phenomenon and experimental validations. We thus show that vibrations up to a few kHz are well confined on top of the actuated area with vibration amplitude over 1 micrometer. The principle was validated with piezoelectric actuators of various shapes and a linear resonant actuator (LRA). Investigation of the effect of a fingertip load on the system through theory and experimentation was conducted and revealed that almost no attenuation was brought by the fingertip when using low frequency evanescent waves. Finally, a perceptual validation was conducted and showed dynamic stimuli with a large frequency spectrum could be felt and distinguished.
机译:在触摸表面上,提供局部振动反馈,可实现多用户和多点触控相互作用。虽然振动传播通常会阻碍这种定位,但我们在本文中示出了窄条状板构成波导,其中截止频率低于截止频率的弯曲波不会传播。我们提供了对现象和实验验证的理论解释。因此,我们表明,高达几个kHz的振动很好地限制在致动区域顶部,振动幅度超过1微米。用各种形状和线性谐振致动器(LRA)的压电致动器验证原理。通过理论和实验研究了指尖负荷对系统的影响,并揭示了指尖在使用低频渐逝波时几乎没有衰减。最后,进行了感知验证,并显示出具有大频谱的动态刺激,可以感受和区分。

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