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An Empirical BSSRDF Model

机译:经验BSSRDF模型

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摘要

We present a new model of the homogeneous BSSRDF based on large-scale simulations. Our model captures the appearance of materials that are not accurately represented using existing single scattering models or multiple isotropic scattering models (e.g. the diffusion approximation). We use an analytic function to model the 2D hemispherical distribution of exitant light at a point on the surface, and a table of parameter values of this function computed at uniformly sampled locations over the remaining dimensions of the BSSRDF domain. This analytic function is expressed in elliptic coordinates and has six parameters which vary smoothly with surface position, incident angle, and the underlying optical properties of the material (albedo, mean free path length, phase function and the relative index of refraction). Our model agrees well with measured data, and is compact, requiring only 250MB to represent the full spatial- and angular-distribution of light across a wide spectrum of materials. In practice, rendering a single material requires only about 100KB to represent the BSSRDF.
机译:我们提出了基于大规模仿真的同构BSSRDF的新模型。我们的模型捕获使用现有的单个散射模型或多个各向同性散射模型(例如扩散近似)无法准确表示的材料的外观。我们使用解析函数对表面上某个点的出射光的2D半球分布进行建模,并使用该函数的参数值表在BSSRDF域的其余维度上的均匀采样位置上进行计算。该解析函数以椭圆坐标表示,并具有六个参数,这些参数随表面位置,入射角和材料的基本光学特性(反照率,平均自由程长度,相位函数和相对折射率)而平滑变化。我们的模型与测得的数据非常吻合,并且结构紧凑,仅需250MB即可代表各种材料在整个光范围内的光分布和角度分布。实际上,呈现单个材料仅需要大约100KB即可表示BSSRDF。

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