指垫上具有时空刺激分布的可穿戴式吸触显示器

Hikaru Nagano, Kazuya Sase, M. Konyo, S. Tadokoro
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引用次数: 5

摘要

在操纵或处理物体等动态交互过程中,指垫上的刺激分布会发生动态变化。这是由施加在指垫上的力的大小和方向以及所处理材料的弹性引起的。过去的一些研究提出了可穿戴触觉系统。然而,在指垫上产生分布式刺激(多自由度刺激)尚未实现。在此,我们提出了一个手指垫上刺激分布的渲染系统。该系统包括一个使用多通道吸力的显示器,该显示器向指垫皮肤呈现分布式刺激,以及一个实时模拟器,该模拟器计算与弹性物体接触时指垫上的动态压力分布。开发的显示器具有良好的可穿戴性,重量轻(5克)和紧凑,因为尽管有多个输出(16个吸口),但它没有指尖上的致动器。我们使用所提出的系统进行了两个不同的实验。这些实验证明,可以根据手指与物体的接触姿势呈现不同的刺激分布(实验1),可以呈现不同弹性值的虚拟材料的柔软度(实验2)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wearable Suction Haptic Display with Spatiotemporal Stimulus Distribution on a Finger Pad
Stimulus distribution on a finger pad dynamically changes during dynamic interactions such as manipulation or handling of an object. This is caused by the magnitude and direction of the applied force on the finger pad and the elasticity of materials handled. Several past studies proposed wearable tactile systems. However, generation of distributed stimuli on a finger pad (multiple degrees of freedom stimulation) has not yet been achieved. Herein, we propose a rendering system for stimulus distribution on a finger pad. The proposed system consists of a display using multi-channel suction that presents distributed stimuli to a finger pad skin, and a real-time simulator that calculates dynamic pressure distribution on the finger pad when in contact with an elastic object. The developed display has good wearability as lightweight (5 g) and compact because it does not have an actuator on the fingertip in spite of multiple outputs (16 suction ports). We performed two different experiments using the proposed system. These experiments proved that it is possible to present different stimulus distribution depending on the contact posture between a finger and an object (experiment 1) and to present the softness of the virtual material with different elasticity values (experiment 2).
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