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An Evaluation of Depth and Size Perception on a Spherical Fish Tank Virtual Reality Display

机译:球形鱼缸虚拟现实显示器上的深度和大小感知的评估

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Tank Virtual Reality (FTVR) displays create a compelling 3D spatial effect by rendering to the perspective of the viewer with head-tracking. Combining FTVR with a spherical display enhances the 3D experience with unique properties of the spherical screen such as the enclosing shape, consistent curved surface, and borderless views from all angles around the display. The ability to generate a strong 3D effect on a spherical display with head-tracked rendering is promising for increasing user's performance in 3D tasks. An unanswered question is whether these natural affordances of spherical FTVR displays can improve spatial perception in comparison to traditional flat FTVR displays. To investigate this question, we conducted an experiment to see whether users can perceive the depth and size of virtual objects better on a spherical FTVR display compared to a flat FTVR display on two tasks. Using the spherical display, we found significantly that users had I cm depth accuracy compared to 6.5cm accuracy using the flat display on a depth-ranking task. Likewise, their performance on a size-matching task was also significantly better with the size error of 2.3mm on the spherical display compared to 3.1 mm on the flat display. Furthermore, the perception of size-constancy is stronger on the spherical display than the flat display. This study indicates that the natural affordances provided by the spherical form factor improve depth and size perception in 3D compared to a flat display. We believe that spherical FTVR displays have potential as a 3D virtual environment to provide better task performance for various 3D applications such as 3D designs, scientific visualizations, and virtual surgery.
机译:坦克虚拟现实(FTVR)显示器通过头部追踪渲染到观看者的视角,从而创造出引人注目的3D空间效果。将FTVR与球形显示器相结合,可通过球形屏幕的独特属性(例如,封闭的形状,一致的曲面和从显示器周围各个角度进行无边界观看)增强3D体验。在具有头部跟踪渲染的球形显示器上生成强大3D效果的能力有望提高用户在3D任务中的性能。尚未解决的问题是,与传统的平板FTVR显示器相比,球形FTVR显示器的这些自然承受能力是否可以改善空间感知。为了调查这个问题,我们进行了一项实验,以观察与两个任务上的平面FTVR显示器相比,球形FTVR显示器用户是否能更好地感知虚拟对象的深度和大小。使用球形显示器,我们发现与深度排序任务中的平面显示器相比,用户的深度精度为6.5cm,与之相比,用户具有1cm的深度精度。同样,它们在尺寸匹配任务上的性能也显着提高,球形显示器的尺寸误差为2.3mm,而平板显示器的误差为3.1mm。此外,在球形显示器上的尺寸稳定性比平面显示器强。这项研究表明,与平面显示器相比,球形形状因子提供的自然承受能力改善了3D中的深度和尺寸感知。我们相信球形FTVR显示器具有作为3D虚拟环境的潜力,可以为3D设计,科学可视化和虚拟手术等各种3D应用提供更好的任务性能。

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