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Number of discernible object colors is a conundrum

机译:可识别的对象颜色数量是一个难题

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摘要

Widely varying estimates of the number of discernible object colors have been made by using various methods over the past 100 years. To clarify the source of the discrepancies in the previous, inconsistent estimates, the number of discernible object colors is estimated over a wide range of color temperatures and illuminance levels using several chromatic adaptation models, color spaces, and color difference limens. Efficient and accurate models are used to compute optimal-color solids and count the number of discernible colors. A comprehensive simulation reveals limitations in the ability of current color appearance models to estimate the number of discernible colors even if the color solid is smaller than the optimal-color solid. The estimates depend on the color appearance model, color space, and color difference limen used. The fundamental problem lies in the von Kries-type chromatic adaptation transforms, which have an unknown effect on the ranking of the number of discernible colors at different color temperatures.
机译:在过去的100年中,通过使用各种方法对可识别的对象颜色的数量进行了各种各样的估算。为了弄清以前不一致的估计中的差异来源,使用几种颜色适应模型,颜色空间和色差线性度,在宽范围的色温和照度级别上估计了可识别的对象颜色的数量。高效,准确的模型用于计算最佳颜色的纯色并计算可辨别颜色的数量。全面的模拟揭示了当前颜色外观模型估计可分辨颜色的数量的能力的局限性,即使颜色实线小于最佳颜色实线。估计值取决于使用的颜色外观模型,颜色空间和色差。根本问题在于冯·克里斯(von Kries)型色适应变换,该变换对不同色温下可辨别的颜色数量的排名产生未知的影响。

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