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A Novel Method of Color Appearance Simulation Using Achromatic Point Locus With Lightness Dependence

机译:基于亮度依赖的消色差点轨迹的颜色外观模拟的新方法

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The purpose of the present study is to propose a simple algorithm for color appearance simulation under a color illuminant. Achromatic point is a chromaticity of rays that appear neither red nor green, neither blue nor yellow under a given illuminant condition. Saturation and hue of surface colors are evaluated with respect to the achromatic point of the same lightness, while the achromatic point under a colored illuminant depends on the lightness tested. We previously found that this achromatic point locus can be simply approximated as a line with a parallel offset from the lightness axis of CIE LAB space normalized to daylight. We propose a model that applies shifts in the lightness direction after applying hue/saturation shifts using the cone-response (von Kries) transformation under an iso-lightness constraint, such that achromatic points would be aligned with the lightness axis in the CIE LAB space under daylight normalization. We tested this algorithm, which incorporates evaluation of color appearance in different lightness levels, using #theDress image. Resemblance between our simulation and subjective color-matching results implies that human color vision possibly processes shifts in color and lightness independently, as a previous study reported. Changes in the chromaticity distribution of the images were compared with conventional models, and the proposed model preserved relative color difference better, especially at the lower lightness levels. The better performance in lower lightness levels would be advantageous in displays with wider dynamic range in luminance. This implies that the proposed model is effective in simulating color appearance of images with nonnegligible lightness and color differences.
机译:本研究的目的是提出一种在彩色光源下模拟色彩外观的简单算法。消色差点是在给定的光源条件下既不呈现红色也不呈现绿色,不呈现蓝色也不呈现黄色的光线的色度。相对于相同亮度的无色点评估表面颜色的饱和度和色相,而在彩色光源下的无色点取决于测试的亮度。我们先前发现,该消色差点轨迹可以简单地近似为一条线,该线与CIE LAB空间的明度轴平行偏移,并被标准化为日光。我们提出了一个模型,该模型在等亮度约束下使用视锥响应(von Kries)变换在应用色相/饱和度偏移后应用亮度方向上的偏移,以使消色差点与CIE LAB空间中的亮度轴对齐在日光归一化下。我们使用#theDress图像测试了该算法,该算法结合了对不同亮度级别的颜色外观的评估。正如先前的研究报道,我们的模拟结果和主观色彩匹配结果之间的相似之处表明,人类的色觉可能独立处理颜色和亮度的变化。将图像的色度分布变化与常规模型进行了比较,所提出的模型可以更好地保留相对色差,尤其是在较低亮度级别下。在较低亮度水平下更好的性能在亮度动态范围更广的显示器中将是有利的。这意味着所提出的模型在模拟亮度和色差不可忽略的图像的颜色外观时是有效的。

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