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A Hypothesis Regarding the Poor Blue Constancy of CIELAB

机译:关于CIELAB的蓝色恒常性差的假设

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The poor blue constancy of the CIELAB equations has been noted by a number of researchers, and various proposals have been made to address this shortcoming. The specific issue is the tendency for highly chromatic blues to appear more purple as the chroma is reduced for a constant hue angle. The root cause for the poor CIELAB blue constancy has been an open question, although one possibility is a basic deficiency in the CIELAB equations. An alternative hypothesis is that the equations, in combination with color matching functions with a distinct secondary lobe on the x-bar or long-wavelength sensitive channel, such as those found on the International Commission on Illumination (CIE) 1931 and 1964 Standard Observers, are problematic. The spectral curves of a constant hue IPT (Intensity, Protan, and Tritan) blue step ramp displayed on a CRT are used to explore this hypothesis. Additional discussion examines the use of sharpened sensors and achieving parallel tritanopic confusion lines in the CIELAB color space. The results suggest that use of the CIE Standard Observers with the CIELAB equations results in poor blue constancy and distorted tritanopic confusion lines.
机译:许多研究人员已经注意到CIELAB方程的蓝色恒常性很差,并且已经提出了各种建议来解决这一缺点。特定的问题是,当色度在恒定的色相角下降低时,高度彩色的蓝色趋向于显示更多紫色。 CIELAB蓝色恒常性差的根本原因一直是一个悬而未决的问题,尽管一种可能性是CIELAB方程中的一个基本缺陷。另一种假设是,这些方程式与颜色匹配函数结合在一起,在x形或长波敏感通道上具有明显的次级波瓣,例如在国际照明委员会(CIE)1931和1964标准观察家中发现的那些,有问题。 CRT上显示的恒定色调IPT(强度,Protan和Tritan)蓝色阶跃的光谱曲线用于探索这一假设。附加讨论探讨了锐化传感器的使用以及在CIELAB颜色空间中如何实现平行的三眼混乱线。结果表明,将CIE标准观察者与CIELAB方程配合使用会导致蓝色恒常性差和三色性混淆线失真。

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