Separating Partially-Polarized Diffuse and Specular Reflection Components under Unpolarized Light Sources

Soma Kajiyama, Taihe Piao, Ryo Kawahara, Takahiro Okabe
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Abstract

Separating diffuse and specular reflection components observed on an object surface is important for preprocessing of various computer vision techniques. Conventionally, diffuse-specular separation based on the polarimetric and color clues assumes that the diffuse/specular reflection components are unpolarized/partially polarized under unpolarized light sources. However, the diffuse reflection component is partially polarized in fact, because the diffuse reflectance is maximal when the polarization direction is parallel to the outgoing plane. Accordingly, we propose a method for separating partially-polarized diffuse and specular reflection components on the basis of the polarization reflection model and the dichromatic reflection model. In particular, our method enables us not only to achieve diffuse-specular separation but also to estimate the polarimetric properties of the object surface from a single color polarization image. We experimentally confirmed that our method performs better than the method assuming unpolarized diffuse reflection components.
在非偏振光源下分离部分偏振漫反射和镜面反射分量
在各种计算机视觉技术的预处理中,分离物体表面上观察到的漫反射和镜面反射分量是很重要的。通常,基于偏振和颜色线索的漫反射/镜面分离假设漫反射/镜面反射成分在非偏振光源下是未偏振/部分偏振的。然而,漫反射分量实际上是部分极化的,因为当偏振方向平行于出射平面时,漫反射最大。据此,我们提出了一种基于偏振反射模型和二色反射模型分离部分偏振漫反射和镜面反射分量的方法。特别是,我们的方法使我们不仅能够实现漫射-镜面分离,而且还可以从单色偏振图像中估计物体表面的偏振特性。我们的实验证实,我们的方法比假设无偏振漫反射分量的方法性能更好。
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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