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Unifying Diffuse and Specular Reflections for the Photometric Stereo Problem

机译:光度立体问题的统一漫反射和镜面反射

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摘要

After thirty years of researching, the photometric stereo technique for 3D shape recovery still does not provide reliable results if it is not constrained into very well-controlled scenarios. In fact, dealing with realistic materials and lightings yields a non-linear bidirectional reflectance distribution function which is primarily difficult to parametrize and then arduous to solve. With the aim to let the photometric stereo approach face more realistic assumptions, in this work we firstly introduce a unified irradiance equation describing both diffuse and specular reflection components in a general lighting setting. After that, we define a new equation we call unifying due to its basic features modeling the photometric stereo problem for heterogeneous materials. It is provided by making the ratio of irradiance equations holding both diffuse and specular reflections as well as non-linear light propagation features simultaneously. Performing a wide range of experiments, we show that this new approach overcomes state-of-the-art since it leads to a system of unifying equations which can be solved in a very robust manner using an efficient variational approach.
机译:经过三十年的研究,如果不将3D形状恢复的光度学立体技术限制在控制得很好的场景中,它仍然无法提供可靠的结果。实际上,处理现实的材料和照明会产生非线性的双向反射率分布函数,该函数主要难以参数化,然后很难解决。为了让测光立体方法面对更现实的假设,在这项工作中,我们首先引入一个统一的辐照度方程,该方程描述了一般照明设置中的漫反射和镜面反射分量。之后,我们定义了一个称为统一的新方程式,这是因为该方程式的基本特征是为异质材料的光度立体问题建模。通过使同时保持漫反射和镜面反射以及非线性光传播特征的辐照度方程式的比率来提供。通过进行广泛的实验,我们证明了这种新方法克服了最新技术,因为它导致了一个统一的方程式系统,可以使用高效的变分方法以非常鲁棒的方式对其进行求解。

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    Mecca Roberto; Quéau Yvain;

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  • 年度 2016
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