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A radiance cache method for highly glossy surfaces

机译:高光泽表面的辐射缓存方法

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Radiance caching methods have proven to be efficient for global illumination. Their goal is to compute precisely illumination values (incident radiance or irradiance) at a reasonable number of points lying on the scene surfaces. These points, called records, are stored in a cache used for estimating illumination at other points in the scene. Unfortunately, with records lying on glossy surfaces, the irradiance value alone is not sufficient to evaluate the reflected radiance; each record should also store the incident radiance for all incident directions. Memory storage can be reduced with projection techniques using spherical harmonics or other basis functions. These techniques provide good results for low shininess BRDFs. However, they get impractical for shininess of even moderate value, since the number of projection coefficients increases drastically. In this paper, we propose a new radiance caching method that handles highly glossy surfaces while requiring a low memory storage. Each cache record stores a coarse representation of the incident illumination thanks to a new data structure, called Equivalent Area light Sources, capable of handling fuzzy mirror surfaces. In addition, our method proposes a new simplification of the interpolation process, since it avoids the need for expressing and evaluating complex gradients.
机译:辐射缓存方法已被证明对于全局照明是有效的。他们的目标是精确计算场景表面上合理数量的点处的照明值(入射辐射或辐照度)。这些称为记录的点存储在用于估计场景中其他点照明的缓存中。不幸的是,由于记录位于光滑的表面上,仅辐照度值不足以评估反射的辐照度。每个记录还应存储所有入射方向的入射辐射率。使用球谐函数或其他基函数的投影技术可以减少存储空间。这些技术为低光泽BRDF提供了良好的结果。但是,由于投影系数的数量急剧增加,因此即使亮度适中,它们也不实用。在本文中,我们提出了一种新的辐射缓存方法,该方法可以处理高度光泽的表面,同时又需要较少的内存存储。由于有一个新的称为等效面积光源的数据结构能够处理模糊的镜面,因此每个缓存记录都存储了入射照明的粗略表示。另外,我们的方法提出了一种新的插值过程简化方法,因为它避免了表达和评估复杂梯度的需要。

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