Green's function solution to subsurface light transport for BRDF computation

Charly Collin, Ke Chen, Ajit Hakke Patil, S. Pattanaik, K. Bouatouch
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引用次数: 1

Abstract

This paper presents an accurate method to compute the bidirectional reflectance distribution function (BRDF) due to subsurface scattering inside the material of the objects. This computation requires iterating over the different lighting directions, and solving the integro-differential equation of light transport (scattering and absorption). Solving the light transport equation is expensive, and solving it independently for different directions adds even further to the expense. However most of the computations are very similar between directions. We make use of Green's function of the transport problem to have a better separation between computations that are independent of incident directions from those that are dependent. This allows us to avoid as much repetition in the computations as possible, thus gives us a faster BRDF computation method without any loss of accuracy. We validate our method against a standard light transport solver and use it to compute BRDF for a variety of materials.
用于BRDF计算的地下光输运格林函数解
本文提出了一种精确计算物体内部由于次表面散射而产生的双向反射分布函数(BRDF)的方法。这种计算需要在不同的光照方向上迭代,并求解光传输的积分微分方程(散射和吸收)。求解光输运方程是很昂贵的,而在不同方向上独立求解则进一步增加了费用。然而,大多数计算在不同方向上是非常相似的。我们利用传输问题的格林函数来更好地分离独立于入射方向的计算和依赖于入射方向的计算。这使我们可以避免在计算中尽可能多的重复,从而给我们一个更快的BRDF计算方法,而不损失任何精度。我们对标准光传输求解器验证了我们的方法,并使用它来计算各种材料的BRDF。
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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