在头戴式投影显示器中,反射屏对深度感知的影响

Rui Zhang, H. Hua
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引用次数: 8

摘要

感知深度精度是增强现实显示系统的基本性能指标。许多因素可能会影响头戴式显示器(HMD)的感知深度,如显示分辨率、瞳孔间距(IPD)、冲突的深度线索、立体灵敏度和头部跟踪误差。除了这些hmd系统的典型限制因素外,通过头戴式投影显示器(HMPD)感知的深度可能会受到使用反光屏幕的进一步影响。在本文中,我们将使用感知深度匹配方法来评估HMPD系统的感知深度精度。在我们的研究中要调查的主要因素是反射屏相对于投影成像平面的位置,投影成像平面放置在与用户的不同距离。总体而言,判断距离与实际距离的比值和判断距离的标准差随着参考物体距离的增加呈线性增加。在参考目标距离约1.4m处,观察到深度低估到深度高估的过渡效应。反射屏的位置仅对该切换点附近的深度判断误差有显著影响。分析了反射屏对深度判断的各种影响。深度提示和反射屏带来的图像亮度降低是影响深度判断精度的主要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of a retroreflective screen on depth perception in a head-mounted projection display
The perceived depth accuracy is a fundamental performance metrics for an augmented reality display system. Many factors may affect the perceived depth of a head-mounted display (HMD), such as display resolution, interpupillary distance (IPD), conflicting depth cues, stereoacuity, and head tracking error. Besides these typical limiting factors to an HMD-type system, the perceived depth through a head-mounted projection display (HMPD) may be further affected by the usage of a retroreflective screen. In this paper, we will evaluate the perceived depth accuracy of an HMPD system using a perceptual depth matching method. The main factor to be investigated in our study is the position of a retroreflective screen relative to the projection image plane, with the projection image plane placed at different distances to the user. Overall, it is found that the ratio of the judged distance to real distance and the standard deviation of the judged distance increase linearly with the reference object distance. A transition effect from depth underestimation to overestimation has been observed at the reference object distance of around 1.4m. The position of a retroreflective screen only has a significant effect on the depth judgment error around this switching point. The paper also analyzes various effects brought by a retroreflective screen on the depth judgment. The depth cue and the image luminance reduction brought by a retroreflective screen could be the main factors that affect the depth judgment accuracy.
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