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可穿戴指尖设备的三维皮肤滑移显示设计与评估。

Design and Evaluation of a Wearable Fingertip Device for Three-Dimensional Skin-Slip Display.

出版信息

IEEE Trans Haptics. 2024 Jul-Sep;17(3):302-309. doi: 10.1109/TOH.2023.3312661. Epub 2024 Sep 19.

Abstract

Skin-slip provides crucial cues about the interaction state and surface properties. Currently, most skin-slip devices focus on two-dimensional tactile slip display and have limitations when displaying surface properties like bumps and contours. In this article, a wearable fingertip device with a simple, effective, and low-cost design for three-dimensional skin-slip display is proposed. Continuous multi-directional skin-slip and normal indentation are combined to convey the sensation of three-dimensional geometric properties in virtual reality during active finger exploration. The device has a tactile belt, a five-bar mechanism, and four motors. Cooperating with the angle-mapping strategy, two micro DC motors are used to transmit continuous multi-directional skin-slip. Two servo motors are used to drive the five-bar mechanism to provide normal indentation. The characteristics of the device were obtained through the bench tests. Three experiments were designed and sequentially conducted to evaluate the performance of the device in three-dimensional surface exploration. The experimental results suggested that this device could effectively transmit continuous multi-directional skin-slip sensations, convey different bumps, and display surface contours.

摘要

皮肤滑移提供了关于相互作用状态和表面特性的关键线索。目前,大多数皮肤滑移设备专注于二维触觉滑移显示,在显示凸起和轮廓等表面特性时存在局限性。本文提出了一种具有简单、有效和低成本设计的可穿戴指尖设备,用于三维皮肤滑移显示。连续多方向皮肤滑移和正常压入相结合,在主动手指探索期间在虚拟现实中传递三维几何特性的感觉。该设备具有一个触觉带、一个五杆机构和四个电机。通过角度映射策略配合,两个微型直流电机用于传输连续多方向皮肤滑移。两个伺服电机用于驱动五杆机构提供正常压入。通过台架测试获得了设备的特性。设计了三个实验,并依次进行了实验,以评估设备在三维表面探索中的性能。实验结果表明,该设备可以有效地传输连续多方向皮肤滑移感觉,传递不同的凸起,并显示表面轮廓。

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