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Spectral Appearance Changes Induced by Light Exposure

机译:曝光引起的光谱外观变化

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The fading of materials due to light exposure over time is a major contributor to the overall aged appearance of man-made objects. Although much attention has been devoted to the modeling of aging and weathering phenomena over the last decade, comparatively little attention has been paid to fading effects. In this article, we present a theoretical framework for the physically based simulation of time-dependent spectral changes induced by absorbed radiation. This framework relies on the general volumetric radiative transfer theory, and it employs a physicochemical approach to account for variations in the absorptive properties of colorants. Employing this framework, a layered fading model that can be readily integrated into existing rendering systems is developed using the Kubelka-Munk theory. We evaluate its correctness through comparisons of measured and simulated fading results. Finally, we demonstrate the effectiveness of this model through renderings depicting typical fading scenarios.
机译:由于长时间曝光而导致的材料褪色是造成人造物体整体老化的主要原因。尽管在过去的十年中,人们对老化和风化现象的建模投入了大量精力,但对衰落效应的关注却相对较少。在本文中,我们提出了一个理论框架,用于对吸收辐射引起的随时间变化的光谱变化进行物理模拟。该框架依赖于一般的体积辐射转移理论,并采用一种物理化学方法来解决着色剂吸收特性的变化。利用该框架,使用Kubelka-Munk理论开发了可以轻松集成到现有渲染系统中的分层淡入淡出模型。我们通过比较测量的和模拟的衰落结果来评估其正确性。最后,我们通过描绘典型衰落场景的效果图展示了该模型的有效性。

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