Influence of tactile feedback and presence on egocentric distance perception in virtual environments

F. Ahmed, Joseph D. Cohen, K. Binder, C. Fennema
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引用次数: 17

Abstract

A number of studies have reported that distance judgments are underestimated in virtual environments (VE) when compared to those made in the real world. Studies have also reported that providing users with visual feedback in the VE improves their distance perception and made them feel more immersed in the virtual world. In this study, we investigated the effect of tactile feedback and visual manipulation of the VE on egocentric distance perception. In contrast to previous studies which have focused on task-specific and error-corrective feedback (for example, providing knowledge about the errors in distance estimations), we demonstrate that exploratory feedback is sufficient for reducing errors in distance estimation. In Experiment 1, the effects of different types of feedback (visual, tactile and visual plus tactile) on distance judgments were studied. Tactile feedback was given to participants as they explored and touched objects in a VE. Results showed that distance judgments improved in the VE regardless of the type of sensory feedback provided. In Experiment 2, we presented a real world environment to the participants and then situated them in a VE that was either a replica or an altered representation of the real world environment. Results showed that participants made significant underestimation in their distance judgments when the VE was not a replica of the physical space. We further found that providing both visual and tactile feedback did not reduce distance compression in such a situation. These results are discussed in the light of the nature of feedback provided and how assumptions about the VE may affect distance perception in virtual environments.
触觉反馈和在场对虚拟环境中自我中心距离感知的影响
许多研究报告称,与现实世界相比,虚拟环境(VE)中的距离判断被低估了。研究还报告说,在虚拟现实中为用户提供视觉反馈可以提高他们的距离感知能力,让他们更沉浸在虚拟世界中。在本研究中,我们探讨了触觉反馈和视觉操作对VE自我中心距离感知的影响。与之前的研究相反,这些研究主要集中在特定任务和错误纠正反馈(例如,提供关于距离估计误差的知识),我们证明探索性反馈足以减少距离估计中的误差。实验1研究了不同类型的反馈(视觉、触觉和视觉加触觉)对距离判断的影响。当参与者在虚拟现实中探索和触摸物体时,他们会得到触觉反馈。结果表明,无论提供何种感觉反馈,VE的距离判断都有所改善。在实验2中,我们向参与者展示了一个真实世界的环境,然后将他们置于一个虚拟现实中,这个虚拟现实要么是真实世界环境的复制品,要么是对真实世界环境的改变。结果表明,当虚拟空间不是物理空间的复制品时,参与者在距离判断上存在明显的低估。我们进一步发现,在这种情况下,同时提供视觉和触觉反馈并没有减少距离压缩。根据所提供反馈的性质以及关于VE的假设如何影响虚拟环境中的距离感知来讨论这些结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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