Effects of inter-reflections on the correlated colour temperature and colour rendition of the light field

Yu MSc, Wijntjes, Eisemann, S. Pont, Cehao Yu
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引用次数: 2

Abstract

In everyday scenes, the effective light (the actual light in a space) can be defined as a complex light field, resulting from a mixture of emissive light sources and indirect mutual surface (inter-)reflections. Hence, the light field typically consists of diffuse and directional illumination and varies in spectral irradiance as a function of location and direction. The spatially varying differences between the diffuse and directional illumination spectra induce correlated colour temperature (CCT) and colour rendition variations over the light fields. Here, we aim to investigate the colourimetric properties of the actual light, termed the effective CCT and colour rendition, for spaces of one reflectance (uni-chromatic spaces). The spectra of the diffuse light-field component (light density) and the directional light-field component (light vector) were measured in both physical and simulated uni-chromatic spaces illuminated by ordinary white light sources. We empirically tested the effective CCT and colour rendition for the light density and the light vector, separately. There were significant differences between the lamp-specified CCT and colour rendition and the actual light-based effective CCT and effective colour rendition. Inter-reflections predominantly affected the CCT and colour rendition of the light density relative to the light vector. Treating the diffuse and directional light-field components in a linear model reveals the separate influences of the light source and scene. These effects show the importance of a 3D version of colour checkers for lighting designers, architects or in general computer graphics applications, for which we propose simple Lambertian spheres.
间反射对光场相关色温和显色性的影响
在日常场景中,有效光(空间中的实际光)可以定义为一个复杂的光场,它是由发射光源和间接的相互表面反射混合而成的。因此,光场通常由漫射和定向照明组成,光谱辐照度随位置和方向的变化而变化。漫射和定向照明光谱之间的空间差异导致了光场上的相关色温(CCT)和显色变化。在这里,我们的目的是研究实际光的比色特性,称为有效CCT和显色性,用于一个反射率的空间(单色空间)。在普通白光源照射的物理空间和模拟单色空间中,测量了漫射光场分量(光密度)和定向光场分量(光矢量)的光谱。我们分别对光密度和光向量的有效CCT和光还原度进行了实证测试。灯指定的CCT和显色性与实际基于光的有效CCT和显色性之间存在显著差异。相互反射主要影响CCT和光密度相对于光矢量的显色性。在线性模型中处理漫射光场和定向光场组件揭示了光源和场景的独立影响。这些效果显示了3D版本的颜色检查器对照明设计师、建筑师或一般计算机图形应用程序的重要性,为此我们提出了简单的朗伯球体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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