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Noncontact Tactile Display Based on Radiation Pressure of Airborne Ultrasound

机译:基于机载超声辐射压的非接触式触觉显示器

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摘要

This paper describes a tactile display which provides unrestricted tactile feedback in air without any mechanical contact. It controls ultrasound and produces a stress field in a 3D space. The principle is based on a nonlinear phenomenon of ultrasound: Acoustic radiation pressure. The fabricated prototype consists of 324 airborne ultrasound transducers, and the phase and intensity of each transducer are controlled individually to generate a focal point. The DC output force at the focal point is 16 mN and the diameter of the focal point is 20 mm. The prototype produces vibrations up to 1 kHz. An interaction system including the prototype is also introduced, which enables users to see and touch virtual objects.
机译:本文描述了一种触觉显示器,该触觉显示器在空气中提供了不受限制的触觉反馈,而没有任何机械接触。它控制超声并在3D空间中产生应力场。该原理基于超声的非线性现象:声辐射压力。所制造的原型机由324个机载超声换能器组成,每个换能器的相位和强度都受到单独控制以生成焦点。焦点的直流输出力为16 mN,焦点的直径为20 mm。该原型产生高达1 kHz的振动。还引入了包括原型的交互系统,该系统使用户能够查看和触摸虚拟对象。

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