过渡环境增强了沉浸式虚拟现实系统的距离感知能力

Frank Steinicke, G. Bruder, K. Hinrichs, M. Lappe, B. Ries, V. Interrante
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引用次数: 81

摘要

几个实验提供的证据表明,在沉浸式虚拟环境中,相对于现实世界,以自我为中心的距离被认为是被压缩的。造成这一现象的主要因素在很大程度上仍然未知。然而,最近的实验表明,当虚拟环境(VE)是用户真实物理环境的精确复制品时,人的距离感知能力会提高。此外,有研究表明,当用户在这样的虚拟复制品中开始虚拟现实(VR)体验,然后逐渐过渡到不同的VE时,他们在实际虚拟世界中的存在感显着增加。在这种情况下,虚拟复制品充当真实世界和虚拟世界之间的过渡环境。在本文中,我们研究了一个人的距离估计技能是否可以从过渡环境转移到不同的VE。我们进行了盲走实验,以分析在过渡环境中开始VR体验是否可以提高人在沉浸式VR系统中估计距离的能力。我们发现,当用户通过过渡环境进入虚拟世界时,他们的距离估计技能显著提高。
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Transitional environments enhance distance perception in immersive virtual reality systems
Several experiments have provided evidence that ego-centric distances are perceived as compressed in immersive virtual environments relative to the real world. The principal factors responsible for this phenomenon have remained largely unknown. However, recent experiments suggest that when the virtual environment (VE) is an exact replica of a user's real physical surroundings, the person's distance perception improves. Furthermore, it has been shown that when users start their virtual reality (VR) experience in such a virtual replica and then gradually transition to a different VE, their sense of presence in the actual virtual world increases significantly. In this case the virtual replica serves as a transitional environment between the real and virtual world. In this paper we examine whether a person's distance estimation skills can be transferred from a transitional environment to a different VE. We have conducted blind walking experiments to analyze if starting the VR experience in a transitional environment can improve a person's ability to estimate distances in an immersive VR system. We found that users significantly improve their distance estimation skills when they enter the virtual world via a transitional environment.
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