不同照度下同色光对的色觉估计

A. Mukthy, Michal Vik, M. Viková
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引用次数: 1

摘要

led或照明类的发光二极管由于其准确性和消费者友好的色温,在当今的室内和室外照明行业中占据主导地位。在色彩科学的背景下,有必要分析照明的光谱功率分布和人类在这些光线下的色彩感知特征。在本文中,我们使用基于CIELAB、CAM02-UCS和CAM16-UCS模型的色差公式,对具有4种相关色温和6个照度水平的led下的11对异聚光对的外观进行了估计,以验证我们的估计。我们遵循ASTM D4086标准视觉方法来检测异谱和估计异谱色差的大小。我们的调查发现,颜色外观模型在评估各种LED条件下的色差方面比CIELAB更可靠。CAM16-UCS更准确地预测了三种公式之间的色差估计。我们的比较研究证实,随着CCT和LED光源的照度水平,估计的变化取决于所使用的颜色外观模型。结果还表明,为了确定异聚对的色差,应分别考虑样品的比色特性和观察者的可变性的最佳条件。我们注意到随着照度的增加,相关系数呈增加趋势。然而,在cct中没有这种增加或减少的趋势。颜色外观模型的应力变化趋势显示了颜色适应的影响,但适应模式的建立远远超出了本工作的范围。虽然我们的研究在相关色温和照度方面存在局限性,但我们相信,在评估同色差对时,确保正确的照明决策对照明应用是有益的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COLOR PERCEPTION ESTIMATIONS OF METAMERIC PAIRS UNDER DIFFERENT ILLUMINANCE LEVELS
LEDs or light emitting diodes of the lighting class dominate both the indoor and outdoor lighting industries today due to their accuracy and consumer-friendly color temperature. In the context of color science, it is necessary to analyze both the spectral power distribution of lighting and the human characteristics of color perception under these lights. In this article, we provide estimates of the appearance of eleven metameric pairs under LEDs with four correlated color temperatures and six illuminance levels, using color difference formulas based on the CIELAB, CAM02-UCS, and CAM16-UCS models to verify our estimates. We followed ASTM D4086 standard visual methods for detecting metamerism and for estimating the magnitude of a metameric color difference. Our investigations found that color appearance models are more reliable than CIELAB in evaluating color difference under various LED conditions. CAM16-UCS more accurately predicted the color difference estimates between all three formulas. Our comparative study confirms that the variation in the estimates with the CCT and illuminance levels of the LED sources depends on the color appearance model used. The results also showed that in order to determine the color difference of metameric pairs, optimal conditions regarding the colorimetric properties of the samples and the variability of the observer should be considered separately. We noticed an increasing correlation trend with increasing illuminance. However, there was no such increase or decrease trend in CCTs. The trend of the STRESS change in the color appearance models showed the influence of the chromatic adaptation, but the establishment of adaptation patterns is far beyond the scope of this work. Although our research has had limitations on correlated color temperature and illuminance, we believe that it can be beneficial for the lighting application to ensure correct lighting decisions when assessing the color differences of metameric pairs.
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