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A unified framework for scene illuminant estimation

机译:场景照明估算的统一框架

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摘要

Most existing illuminant estimation algorithms work with assumptions of specific source types (e.g. directional light source or point light source). The assumptions bring up two main limitations which significantly restrict their applicabilities: first, the prior knowledge about source types is needed; second, it can not handle complex scenes where multiple source types co-exist. In this paper, we develop a general light source model which is designed to model arbitrary light sources. With the general source model, we are able to estimate multiple illuminants of different types within a single unified framework. We use a plastic sphere to probe both diffuse and specular reflections of a scene. With specular reflections, we estimate geometric parameters of the illuminants by a novel ray tracing and matching algorithm. The diffuse reflections are used to estimate photometric parameters of the illuminants. We also notice that common source types are degenerate cases of the general source model under certain conditions. Therefore, we can approximate light sources with common source types by checking the conditions. The approximations serve as type determinations of light sources, which makes our framework extremely useful for lighting related algorithms which need prior knowledge about light sources. Experiment results on a variety of real images demonstrate the efficiency and accuracy of our algorithm.
机译:大多数现有的光源估计算法均以特定光源类型(例如定向光源或点光源)为前提。这些假设带来了两个主要限制,这些限制大大限制了它们的适用性:首先,需要有关源类型的先验知识;其次,它不能处理多种源类型共存的复杂场景。在本文中,我们开发了一个通用光源模型,该模型旨在对任意光源进行建模。使用通用光源模型,我们能够在一个统一的框架内估算不同类型的多个光源。我们使用塑料球体来探测场景的漫反射和镜面反射。利用镜面反射,我们通过一种新颖的光线跟踪和匹配算法来估计光源的几何参数。漫反射用于估计光源的光度参数。我们还注意到,在某些条件下,通用源类型是通用源模型的简并情况。因此,我们可以通过检查条件来近似具有常见光源类型的光源。近似值用作光源的类型确定,这使得我们的框架对于需要先了解光源的照明相关算法非常有用。在各种真实图像上的实验结果证明了我们算法的效率和准确性。

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