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利用吸力刺激在手指垫上呈现触觉接触信息的可穿戴式高分辨率触觉显示器。

Wearable High-Resolution Haptic Display Using Suction Stimuli to Represent Cutaneous Contact Information on Finger Pad.

出版信息

IEEE Trans Haptics. 2023 Oct-Dec;16(4):687-694. doi: 10.1109/TOH.2023.3280391. Epub 2023 Dec 21.

DOI:10.1109/TOH.2023.3280391
PMID:37235459
Abstract

A high-resolution haptic display that reproduces tactile distribution information on the contact surface between a finger and an object realizes the presentation of the softness of the object and the magnitude and direction of the applied force. In this article, we developed a 32-channel suction haptic display that can reproduce tactile distribution on fingertips with high resolution. The device is wearable, compact, and lightweight, thanks to the absence of actuators on the finger. A FE analysis of the skin deformation confirmed that the suction stimulus interfered less with adjacent stimuli in the skin than when pressing with positive pressure, thus allowing more precise control of local tactile stimuli. The optimal layout with the least error was selected from three configurations dividing 62 suction holes into 32 ports.The suction pressures were determined by calculating the pressure distribution by a real-time finite element simulation of the contact between the elastic object and the rigid finger. A discrimination experiment of softness with different Young's modulus and its JND investigation suggested that the higher resolution of the suction display improved the performance of the softness presentation compared to a 16-channel suction display previously developed by the authors.

摘要

一种高分辨率触觉显示器,可再现手指与物体接触表面上的触觉分布信息,实现物体柔软度以及所施加力的大小和方向的呈现。在本文中,我们开发了一种 32 通道的抽吸式触觉显示器,可实现高分辨率的指尖触觉分布再现。由于手指上没有执行器,该设备小巧轻便。皮肤变形的有限元分析证实,与正压按压相比,抽吸刺激对相邻刺激的干扰更小,从而可以更精确地控制局部触觉刺激。从将 62 个抽吸孔分成 32 个端口的三种配置中选择了具有最小误差的最佳布局。通过对弹性物体与刚性手指之间接触的实时有限元模拟计算压力分布,确定了抽吸压力。不同杨氏模量的柔软度判别实验及其 JND 研究表明,与作者之前开发的 16 通道抽吸显示器相比,抽吸显示器的更高分辨率提高了柔软度呈现的性能。

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