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Appearance of Achromatic Colors Under Optimized Light Source Spectrum

机译:优化光源光谱下消色差的外观

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摘要

Light source spectrum can be optimized for object reflectance to reduce the energy consumption by reducing the amount of light absorbed by surfaces. While the feasibility of this approach to architectural lighting has been demonstrated, this concept has only been tested with objects of highly saturated colors. Here, the color appearance of 24 Macbeth ColorChecker test samples, which includes achromatic surfaces (i.e., gray, black, and white), illuminated by optimized theoretical test spectra and reference light sources (incandescent, equal-energy radiator, and phosphor-coated white LED) were calculated using a color space based on the International Commission on Illumination's (CIE) color appearance model, CIECAM02-UCS. Results show that energy consumption could be reduced to between 39% and 90%, with small shifts in color appearance, when considering all object colors. When lighting is optimized for achromatic test samples, energy consumption and light absorption were reduced more than when optimized for colorful surfaces, with imperceptible shifts in color appearance.
机译:可以针对物体反射率优化光源光谱,以通过减少表面吸收的光量来减少能耗。虽然已经证明了这种方法用于建筑照明的可行性,但是仅在高度饱和颜色的对象上对该概念进行了测试。在此,通过优化的理论测试光谱和参考光源(白炽灯,等能量辐射器和涂有磷光体的白色)对24个Macbeth ColorChecker测试样品的颜色外观进行了显示,其中包括消色差表面(即灰色,黑色和白色) LED)是根据国际照明委员会(CIE)的颜色外观模型CIECAM02-UCS使用色彩空间计算的。结果表明,在考虑所有对象颜色时,能耗可以降低到39%至90%之间,并且颜色外观变化很小。当针对消色差测试样品优化照明时,与针对彩色表面优化时相比,能耗和光吸收减少得更多,并且颜色外观发生明显变化。

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