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增强现实感觉比虚拟现实“更柔和”:触觉感知增强现实与虚拟现实中的刚度差异。

AR Feels "Softer" than VR: Haptic Perception of Stiffness in Augmented versus Virtual Reality.

出版信息

IEEE Trans Vis Comput Graph. 2017 Nov;23(11):2372-2377. doi: 10.1109/TVCG.2017.2735078. Epub 2017 Aug 10.

Abstract

Does it feel the same when you touch an object in Augmented Reality (AR) or in Virtual Reality (VR)? In this paper we study and compare the haptic perception of stiffness of a virtual object in two situations: (1) a purely virtual environment versus (2) a real and augmented environment. We have designed an experimental setup based on a Microsoft HoloLens and a haptic force-feedback device, enabling to press a virtual piston, and compare its stiffness successively in either Augmented Reality (the virtual piston is surrounded by several real objects all located inside a cardboard box) or in Virtual Reality (the same virtual piston is displayed in a fully virtual scene composed of the same other objects). We have conducted a psychophysical experiment with 12 participants. Our results show a surprising bias in perception between the two conditions. The virtual piston is on average perceived stiffer in the VR condition compared to the AR condition. For instance, when the piston had the same stiffness in AR and VR, participants would select the VR piston as the stiffer one in 60% of cases. This suggests a psychological effect as if objects in AR would feel "softer" than in pure VR. Taken together, our results open new perspectives on perception in AR versus VR, and pave the way to future studies aiming at characterizing potential perceptual biases.

摘要

当你在增强现实 (AR) 或虚拟现实 (VR) 中触摸物体时,感觉会一样吗?在本文中,我们研究并比较了在两种情况下虚拟物体刚度的触觉感知:(1)纯虚拟环境与(2)真实和增强环境。我们设计了一个基于 Microsoft HoloLens 和力反馈设备的实验设置,能够按压一个虚拟活塞,并在增强现实中(虚拟活塞被几个位于纸盒内的真实物体包围)或虚拟现实中(相同的虚拟活塞显示在由相同其他物体组成的完全虚拟场景中)依次比较其刚度。我们进行了一项有 12 名参与者的心理物理学实验。我们的结果显示了两种情况下感知的惊人偏差。与 AR 条件相比,虚拟活塞在 VR 条件下的平均感知硬度更高。例如,当活塞在 AR 和 VR 中的硬度相同时,60%的情况下参与者会选择 VR 活塞作为更硬的活塞。这表明存在一种心理效应,就好像 AR 中的物体比纯 VR 中的物体感觉“更软”。总之,我们的研究结果为 AR 与 VR 中的感知开辟了新的视角,并为未来旨在描述潜在感知偏差的研究铺平了道路。

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