Lee Kang-Kyu, Kim Jae-Woo, Ryu Je-Ho, Kim Jong-Ok
Opt Express. 2020 May 11;28(10):15392-15406. doi: 10.1364/OE.391447.
An optical see-through (OST) display is affected more severely by ambient light than any other type of displays when placed in an outdoor environment with bright illuminance because of its transparency and thus, its inherent color distortion can worsen. It is hard to directly apply existing gamut mapping methods to an OST display because of its morphological gamut characteristic and the effect of ambient light. In this paper, we propose a new robust gamut mapping method which works against bright ambient light. The process is divided into two steps: lightness mapping (LM) and chroma reproduction. LM aligns the lightness level of sRGB gamut with OST gamut and partitions the region of OST gamut based on the relative size of the sRGB gamut and its lightness value. The second step (chroma reproduction) determines an appropriate chroma reproduction method (gamut compression or extension) and a proper direction for gamut mapping based on the characteristics of each region in order to minimize the effects of ambient light. The quality of color reproduction is qualitatively and quantitatively evaluated based on accurate measurements of the displayed colors. It has been experimentally confirmed that the proposed gamut mapping method can reduce color distortion more than the existing parametric gamut mapping algorithms.
光学透视(OST)显示器由于其透明度,在明亮照度的户外环境中放置时,比任何其他类型的显示器受环境光的影响都更严重,因此其固有的颜色失真会加剧。由于其形态色域特性和环境光的影响,很难将现有的色域映射方法直接应用于OST显示器。在本文中,我们提出了一种新的鲁棒色域映射方法,该方法适用于明亮的环境光。该过程分为两个步骤:明度映射(LM)和色度再现。LM将sRGB色域的明度级别与OST色域对齐,并根据sRGB色域的相对大小及其明度值对OST色域区域进行划分。第二步(色度再现)根据每个区域的特性确定合适的色度再现方法(色域压缩或扩展)和色域映射的正确方向,以尽量减少环境光的影响。基于对显示颜色的精确测量,对颜色再现质量进行定性和定量评估。实验证实,所提出的色域映射方法比现有的参数色域映射算法能减少更多的颜色失真。