Quantification of Contrast Sensitivity and Color Perception using Head-worn Augmented Reality Displays

M. Livingston, Jane H. Barrow, Ciara M. Sibley
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引用次数: 34

Abstract

Augmented reality (AR) displays often reduce the visual capabilities of the user. This reduction can be measured both objectively and through user studies. We acquired objective measurements with a color meter and conducted two user studies for each of two key measurements. First was the combined effect of resolution and display contrast, which equate to the visual acuity and apparent brightness. The combined effect may be captured by the contrast sensitivity function and measured through analogs of optometric exams. We expanded the number of commercial devices tested in previous studies, including higher resolution and video-overlay AR displays. We found patterns of reduced contrast sensitivity similar to previous work; however, we saw that all displays enabled users to achieve the maximum possible acuity with at least moderate levels of contrast. The second measurement was the perception of color. Objective measurements showed a distortion of color, notably in the blue region of color space. We devised a color matching task to quantify the distortion of color perception, finding that the displays themselves were poor at showing colors in the blue region of color space and that the perceptual distortion of such colors was even greater than the objective distortion. We noted significantly different distortions and variability between displays.
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使用头戴式增强现实显示器的对比灵敏度和色彩感知的量化
增强现实(AR)显示往往会降低用户的视觉能力。这种减少既可以客观衡量,也可以通过用户研究来衡量。我们用颜色计获得了客观测量值,并对两个关键测量值中的每一个进行了两次用户研究。首先是分辨率和显示对比度的综合效应,即视觉敏锐度和视亮度。这种综合效应可以通过对比灵敏度函数来捕捉,并通过类似的验光检查来测量。我们扩大了之前研究中测试的商业设备的数量,包括更高分辨率和视频覆盖AR显示器。我们发现对比敏感度降低的模式与之前的工作相似;然而,我们看到所有的显示器都使用户能够在至少中等对比度的情况下获得最大可能的敏锐度。第二项测量是对颜色的感知。客观测量显示颜色失真,特别是在色彩空间的蓝色区域。我们设计了一个颜色匹配任务来量化颜色感知的扭曲,发现显示器本身在色彩空间的蓝色区域显示颜色的能力很差,并且这些颜色的感知扭曲甚至大于客观扭曲。我们注意到不同显示器之间明显不同的扭曲和可变性。
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