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Computing evaluation of the combinations of uniform color spaces and chromatic adaptation correction formulae from the viewpoint of application to the absolute color rendering specification

机译:从应用到绝对显色规范的角度出发,对均匀色彩空间和色彩适应校正公式的组合进行计算评估

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References(6) For calculating absolute color rendering indices which specify the color rendering properties of light sources referring to a single standard illuminant, independent of the correlated color temperature of the sample light sources, a proper combination of a uniform color space and a chromatic adaptation formula is needed. A method of computing evaluation for this combination is here proposed based on the assumption that the Planckian radiators and the CIE daylights in a wide range of correlated color temperature are quite similar to each other in their psychosensorial color rendering properties. Color rendering indices of various light sources are calculated, using several combinations of uniform color spaces and chromatic adaptation correction formulae by changing the reference illuminant. It is assumed here that the smaller the change in the color rendering indices with the change of the reference illuminant the better the combination of the space and the formula. The results show that the combination of the nonlinear transformation formula proposed by Nayatani et al. with the uniform color space CIELAB or Richter’s LABHNU is the best, confirming the results of the former experimental evaluation by the same authors.
机译:参考文献(6)用于计算绝对显色指数,该绝对显色指数指定参考单个标准光源的光源的显色特性,而与样本光源的相关色温无关,均匀色空间和色适应性的适当组合需要公式。在此基础上,提出了一种计算此组合的评估方法,该假设是在广泛的相关色温范围内,普朗克辐射体和CIE日光在心理感知显色特性方面非常相似。通过更改参考光源,使用均匀色彩空间和色彩适应校正公式的几种组合来计算各种光源的显色指数。这里假设随着基准光源的变化,显色指数的变化越小,则空间和公式的组合越好。结果表明,Nayatani等人提出的非线性变换公式的组合。 CIELAB或Richter的LABHNU是最好的色彩空间,这证实了同一作者先前的实验评估结果。

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