IEEE Trans Haptics. 2021 Jan-Mar;14(1):83-94. doi: 10.1109/TOH.2020.3017099. Epub 2021 Mar 24.
In this article, present RealWalk, a pair of haptic shoes for HMD-based VR, designed to create realistic sensations of ground surface deformation, and texture using Magnetorheological fluid (MR fluid). RealWalk offers a novel interaction scheme through the physical interaction between the shoes, and the ground surfaces while walking in VR. Each shoe consists of two MR fluid actuators, an insole pressure sensor, and a foot position tracker. The MR fluid actuators are designed in the form of multi-stacked disc structure with a long flow path to maximize the flow resistance. With changing the magnetic field intensity in MR fluid actuators based on the ground material in the virtual scene, the viscosity of MR fluid is changed accordingly. When a user steps on the ground with the shoes, the two MR fluid actuators are pressed down, creating a variety of ground material deformation such as snow, mud, and dry sand. We built an interactive VR application, and compared RealWalk with vibrotactile-based haptic shoes in four different VR scenes: grass, sand, mud, and snow. We report that, compared to vibrotactile-haptic shoes, RealWalk provides higher ratings in all scenes for discrimination, realism, and satisfaction. We also report qualitative user feedback for their experiences.
本文介绍了 RealWalk,这是一种基于头戴式显示器 (HMD) 的虚拟现实触觉鞋,旨在使用磁流变液 (MR 液) 创造逼真的地面变形和质感感觉。RealWalk 通过在 VR 中行走时鞋子与地面之间的物理相互作用提供了一种新颖的交互方案。每只鞋由两个磁流变液执行器、一个鞋垫压力传感器和一个脚部位置跟踪器组成。磁流变液执行器设计为具有长流动路径的多层堆叠盘结构,以最大限度地增加流动阻力。根据虚拟场景中的地面材料,基于磁流变液执行器中的磁场强度改变,磁流变液的粘度相应改变。当用户穿着鞋子踩在地面上时,两个磁流变液执行器被向下按压,从而产生各种地面材料变形,如雪地、泥泞和干沙。我们构建了一个交互式虚拟现实应用程序,并在四个不同的虚拟现实场景(草地、沙滩、泥泞和雪地)中比较了 RealWalk 和基于振动触觉的触觉鞋:草地、沙滩、泥泞和雪地。我们报告说,与振动触觉鞋相比,RealWalk 在所有场景中的可区分性、逼真感和满意度方面的评分都更高。我们还报告了用户对体验的定性反馈。