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Chromatic effects of metamers of daylights

机译:日光同源物的色度效应

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The relationship between the spectral composition of light sources and the visual appearance of rendered scenes is a matter of practical relevance and assumes today particular significance with the advent of light sources of almost arbitrary spectral distribution, like modern LED based lighting. This relationship has only been studied for specific illuminants, like daylights, and systematic studies with other light sources are necessary. The aim of this work was to address this issue by studying, computationally, some chromatic effects of metamers of daylight illuminants. For each daylight with correlated color temperature (CCT) in the range 25 000 K- 4000 K a large set of metamers was generate using the Schmitt's elements approach. The metamers set was parameterized by the absolute spectral difference to the equi-energy illuminant E and by the number of non-zero spectral bands. The chromatic effects of the metamers were quantified by the CIE color rendering index CRI and by the CIELAB color gamut generated when rendering the Munsell set. It was found that although CRI decreases with , that is, as the illuminant spectrum becomes spectrally more structured, the largest values for the color gamut could be obtained only for large values of . Furthermore, the relationship between color gamut and number of non-zero bands showed that the largest gamuts were obtained with a small number of spectral bands. Thus, spectrally structured metamers produced low CRI but larger color gamuts, a result suggesting that appropriate spectral tuning may be explored in practical illumination when obtaining large chromatic diversity may be important.
机译:光源的光谱组成与渲染场景的视觉外观之间的关系是实际相关的问题,并且随着几乎任意光谱分布的光源的出现(如现代的基于LED的照明)的出现,如今具有特别的意义。仅针对特定的光源(例如日光)研究了这种关系,并且需要与其他光源进行系统研究。这项工作的目的是通过计算研究日光发光体的同分异构体的某些色度效应来解决这个问题。对于每个相关色温(CCT)在25000 K- 4000 K之间的日光,使用Schmitt元素方法生成了大量的同聚物。通过与等能量光源E的绝对光谱差和非零光谱带的数量来参数化同聚物。通过渲染Munsell集时生成的CIE显色指数CRI和所生成的CIELAB色域,可以量化这些异构体的色度效应。已经发现,尽管CRI随着而降低,即,随着发光体光谱变得在光谱上更加结构化,但是色域的最大值仅对于λ的大值可以获得。此外,色域与非零波段数量之间的关系表明,在少数光谱波段下可获得最大色域。因此,光谱结构化的异构体产生的CRI较低,但色域较大,结果表明,在获得较大的色度多样性时,可以在实际照明中探索适当的光谱调谐可能很重要。

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