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W-FYD:一种用于触觉多线索传递和触觉增强现实的可穿戴织物显示器。

W-FYD: A Wearable Fabric-Based Display for Haptic Multi-Cue Delivery and Tactile Augmented Reality.

作者信息

Fani Simone, Ciotti Simone, Battaglia Edoardo, Moscatelli Alessandro, Bianchi Matteo

出版信息

IEEE Trans Haptics. 2018 Apr-Jun;11(2):304-316. doi: 10.1109/TOH.2017.2708717. Epub 2017 Aug 7.

Abstract

Despite the importance of softness, there is no evidence of wearable haptic systems able to deliver controllable softness cues. Here, we present the Wearable Fabric Yielding Display (W-FYD), a fabric-based display for multi-cue delivery that can be worn on a user's finger and enables, for the first time, both active and passive softness exploration. It can also induce a sliding effect under the finger-pad. A given stiffness profile can be obtained by modulating the stretching state of the fabric through two motors. Furthermore, a lifting mechanism allows to put the fabric in contact with the user's finger-pad, to enable passive softness rendering. In this paper, we describe the architecture of W-FYD, and a thorough characterization of its stiffness workspace, frequency response, and softness rendering capabilities. We also computed device Just Noticeable Difference in both active and passive exploratory conditions, for linear and non-linear stiffness rendering as well as for sliding direction perception. The effect of device weight was also considered. Furthermore, performance of participants and their subjective quantitative evaluation in detecting sliding direction and softness discrimination tasks are reported. Finally, applications of W-FYD in tactile augmented reality for open palpation are discussed, opening interesting perspectives in many fields of human-machine interaction.

摘要

尽管柔软度很重要,但目前尚无证据表明可穿戴触觉系统能够提供可控的柔软度线索。在此,我们展示了可穿戴织物屈服显示器(W-FYD),这是一种基于织物的多线索传递显示器,可佩戴在用户手指上,首次实现了主动和被动的柔软度探索。它还能在指腹下方产生滑动效果。通过两个电机调节织物的拉伸状态,可获得给定的刚度分布。此外,一个提升机构可使织物与用户指腹接触,实现被动柔软度呈现。在本文中,我们描述了W-FYD的架构,并对其刚度工作空间、频率响应和柔软度呈现能力进行了全面表征。我们还计算了该设备在主动和被动探索条件下,针对线性和非线性刚度呈现以及滑动方向感知的最小可觉差。同时考虑了设备重量的影响。此外,还报告了参与者在检测滑动方向和柔软度辨别任务中的表现及其主观定量评估。最后,讨论了W-FYD在用于开放式触诊的触觉增强现实中的应用,为人机交互的许多领域开辟了有趣的前景。

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