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Novel Haptic Mouse System for Holistic Haptic Display and Potential of Vibrotactile Stimulation

机译:用于整体触觉显示的新型触觉鼠标系统和振动触发刺激的潜力

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摘要

This paper describes a novel haptic mouse system which conveys kinesthetic and tactile information simultaneously in virtual environments. The haptic mouse system can provide 2-DOF translational force feedback, vibration, normal pressure, skin stretch and thermal feedback, all of which are important physical quantities of sensing object's shape, stiffness and surface properties. The system can simulate small-scale shapes and roughness of surface textures using cutaneous cues generated by individual drives of a 6x8 pin array. Since thermal differences among surfaces of virtual objects is one of dominant factors in perceiving texture, a thermal feedback unit composed of a heat conduction plate and a temperature sensor is also embedded into the tactile display system. The developed system can be used as a test-bed in psychophysical study on tactile perception. We have investigated the influence of the frequency variation on perceived roughness using the haptic mouse system since vibrotaction has been considered as a key factor affecting perception of fine textures by physiology researchers. In order to find out the relation of roughness and vibration, two psychophysical experiments have been performed. The correlation between the vibration frequency and the texture shows that there are certain transitions of perceived roughness. The experimental results yield that the vibrating stimulus is more effective for displaying a fine surface than static displacement display, and it shows a possibility to display finer texture, exceeding the physical limitation of the device.
机译:本文介绍了一种新颖的触觉鼠标系统,它在虚拟环境中同时传送了运动和触觉信息。触觉鼠标系统可以提供2-DOF转换力反馈,振动,常压,皮肤拉伸和热反馈,所有这些都是感测物体形状,刚度和表面特性的重要物理量。系统可以使用由6x8引脚阵列的各个驱动器产生的皮肤提示来模拟表面纹理的小规模形状和粗糙度。由于虚拟物体表面的热差是感知纹理中的主导因素之一,因此由导热板和温度传感器组成的热反馈单元也嵌入到触觉显示系统中。开发系统可以用作触觉感知的心理物理学研究中的试验台。我们已经研究了使用触觉鼠标系统对感知粗糙度对感知粗糙度的影响,因为vibrotaction被认为是影响物理学研究人员对细纹感知的关键因素。为了找出粗糙度和振动的关系,已经进行了两个心理物理实验。振动频率和纹理之间的相关性表明存在感知粗糙度的某些转变。实验结果产生的是,振动刺激更有效地显示细表面而不是静态位移显示器,并且它显示出更好的纹理,超过设备的物理限制。

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