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通过虚拟环境进行瞬移:路径尺度和环境尺度对空间更新的影响。

Teleporting through virtual environments: Effects of path scale and environment scale on spatial updating.

作者信息

Kelly Jonathan W, Ostrander Alec G, Lim Alex F, Cherep Lucia A, Gilbert Stephen B

出版信息

IEEE Trans Vis Comput Graph. 2020 May;26(5):1841-1850. doi: 10.1109/TVCG.2020.2973051. Epub 2020 Feb 13.

Abstract

Virtual reality systems typically allow users to physically walk and turn, but virtual environments (VEs) often exceed the available walking space. Teleporting has become a common user interface, whereby the user aims a laser pointer to indicate the desired location, and sometimes orientation, in the VE before being transported without self-motion cues. This study evaluated the influence of rotational self-motion cues on spatial updating performance when teleporting, and whether the importance of rotational cues varies across movement scale and environment scale. Participants performed a triangle completion task by teleporting along two outbound path legs before pointing to the unmarked path origin. Rotational self-motion reduced overall errors across all levels of movement scale and environment scale, though it also introduced a slight bias toward under-rotation. The importance of rotational self-motion was exaggerated when navigating large triangles and when the surrounding environment was large. Navigating a large triangle within a small VE brought participants closer to surrounding landmarks and boundaries, which led to greater reliance on piloting (landmark-based navigation) and therefore reduced-but did not eliminate-the impact of rotational self-motion cues. These results indicate that rotational self-motion cues are important when teleporting, and that navigation can be improved by enabling piloting.

摘要

虚拟现实系统通常允许用户进行身体上的行走和转向,但虚拟环境(VE)往往超出了可用的行走空间。传送已成为一种常见的用户界面,即用户通过激光指针指向虚拟环境中期望的位置,有时还包括方向,然后在没有自身运动线索的情况下被传送到该位置。本研究评估了传送时旋转自身运动线索对空间更新性能的影响,以及旋转线索的重要性是否会因运动尺度和环境尺度的不同而变化。参与者在指向未标记的路径起点之前,通过沿着两条向外的路径分支进行传送来完成一个三角形完成任务。旋转自身运动减少了所有运动尺度和环境尺度水平下的总体误差,不过也引入了轻微的旋转不足偏差。当在大三角形中导航以及周围环境较大时,旋转自身运动的重要性被夸大了。在小虚拟环境中导航大三角形会使参与者更接近周围的地标和边界,这导致对领航(基于地标的导航)的更大依赖,从而减少了——但并未消除——旋转自身运动线索的影响。这些结果表明,传送时旋转自身运动线索很重要,并且通过启用领航可以改善导航。

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