论文标题

菲涅尔微纤维BRDF:层状表面体反射的统一

Fresnel Microfacet BRDF: Unification of Polari-Radiometric Surface-Body Reflection

论文作者

Ichikawa, Tomoki, Fukao, Yoshiki, Nobuhara, Shohei, Nishino, Ko

论文摘要

计算机视觉应用在很大程度上依赖于兰伯特弥漫性和微杆形镜面反射模型的线性组合,以表示反射辐射,事实证明,这在物理上是不相容和有限的适用性。在本文中,我们得出了一种新型的分析反射模型,我们称之为菲涅尔微杆型BRDF模型,该模型在物理上是准确的,并且可以推广到各种现实世界表面。我们的关键思想是对表面微几何测量学的菲涅尔反射和传输进行建模,并以各种定向的镜面刻面(用于身体和表面反射)。我们仔细地得出每个微框的菲涅尔反射和传输,以及地下中它们之间的光传输。这种物理地面的建模还使我们能够表达反射光的偏光行为,​​除了其辐射指定行为。也就是说,FMBRDF不仅统一了身体和表面反射,还统一了辐射和极化中的光反射,并在单个模型中代表它们。实验结果证明了其在准确性,表达能力和基于图像的估计中的有效性。

Computer vision applications have heavily relied on the linear combination of Lambertian diffuse and microfacet specular reflection models for representing reflected radiance, which turns out to be physically incompatible and limited in applicability. In this paper, we derive a novel analytical reflectance model, which we refer to as Fresnel Microfacet BRDF model, that is physically accurate and generalizes to various real-world surfaces. Our key idea is to model the Fresnel reflection and transmission of the surface microgeometry with a collection of oriented mirror facets, both for body and surface reflections. We carefully derive the Fresnel reflection and transmission for each microfacet as well as the light transport between them in the subsurface. This physically-grounded modeling also allows us to express the polarimetric behavior of reflected light in addition to its radiometric behavior. That is, FMBRDF unifies not only body and surface reflections but also light reflection in radiometry and polarization and represents them in a single model. Experimental results demonstrate its effectiveness in accuracy, expressive power, and image-based estimation.

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