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虚拟现实中的场景转换与瞬移及其对空间感知和晕动症的影响

Scene Transitions and Teleportation in Virtual Reality and the Implications for Spatial Awareness and Sickness.

作者信息

Moghadam Kasra, Banigan Colin, Ragan Eric D

出版信息

IEEE Trans Vis Comput Graph. 2020 Jun;26(6):2273-2287. doi: 10.1109/TVCG.2018.2884468. Epub 2018 Nov 30.

Abstract

Various viewing and travel techniques are used in immersive virtual reality to allow users to see different areas or perspectives of 3D environments. Our research evaluates techniques for visually showing transitions between two viewpoints in head-tracked virtual reality. We present four experiments that focus on automated viewpoint changes that are controlled by the system rather than by interactive user control. The experiments evaluate three different transition techniques (teleportation, animated interpolation, and pulsed interpolation), different types of visual adjustments for each technique, and different types of viewpoint changes. We evaluated how differences in transition can influence a viewer's comfort, sickness, and ability to maintain spatial awareness of dynamic objects in a virtual scene. For instant teleportations, the experiments found participants could most easily track scene changes with rotational transitions without translational movements. Among the tested techniques, animated interpolations allowed significantly better spatial awareness of moving objects, but the animated technique was also rated worst in terms of sickness, particularly for rotational viewpoint changes. Across techniques, viewpoint transitions involving both translational and rotational changes together were more difficult to track than either individual type of change.

摘要

沉浸式虚拟现实中使用了各种观看和移动技术,以让用户看到3D环境的不同区域或视角。我们的研究评估了在头部追踪虚拟现实中视觉呈现两个视点之间过渡的技术。我们展示了四个实验,这些实验聚焦于由系统而非交互式用户控制的自动视点变化。实验评估了三种不同的过渡技术(瞬移、动画插值和脉冲插值)、每种技术的不同类型视觉调整以及不同类型的视点变化。我们评估了过渡中的差异如何影响观看者在虚拟场景中的舒适度、晕动症以及维持对动态物体空间感知的能力。对于即时瞬移,实验发现参与者在没有平移运动的旋转过渡中最容易跟踪场景变化。在测试的技术中,动画插值能让对移动物体有显著更好的空间感知,但动画技术在晕动症方面的评分也最差,尤其是对于旋转视点变化。在所有技术中,涉及平移和旋转变化的视点过渡比任何一种单独类型的变化都更难跟踪。

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