A fiber scattering model with non-separable lobes

Eugene d'Eon, Steve Marschner, Johannes Hanika
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引用次数: 11

Abstract

Figure 1: Glossy reflections from fibers exhibit a lightand view-dependent lobe tightening similar to surface reflectance that previous analytic fiber models lack (a,c). We derive new non-separable fiber-scattering lobes that exhibit this and additional behaviours seen in ground-truth simulation of rough dielectric fiber scattering. Parameter tweaking of previous models can produce results similar to (d), but no previous model with fixed settings can simultaneously produce both (b) and (d). We found that ground-truth renders using explicit cylindrical geometry with Cook Torrance reflectance to be indistinguishable from (b) and (d) (upon convergence, which required significantly more samples per pixel). The difference between the old and new models is further illustrated in (e) by visualizing the R lobe of a circular fiber with Beckmann micro roughness and tilted scales (black hair). In the backlit case (c,d) light grazes the edges of fibers and exhibits the brighter more focused response (seen in (e) where the lobe compresses and brightens for high |φ |).
具有不可分离叶的光纤散射模型
图1:来自光纤的光滑反射表现出与光和视图相关的叶瓣收紧,类似于以前的分析光纤模型所缺乏的表面反射率(a,c)。我们推导出新的不可分离的光纤散射叶,它表现出这种行为和在粗糙介质光纤散射的真值模拟中看到的其他行为。先前模型的参数调整可以产生类似于(d)的结果,但没有固定设置的先前模型可以同时产生(b)和(d)。我们发现,使用明确的圆柱形几何和Cook Torrance反射率的地面真实渲染与(b)和(d)无法区分(在收敛时,每像素需要更多的样本)。旧模型和新模型之间的差异在(e)中进一步说明,通过可视化具有贝克曼微粗糙度和倾斜鳞片(黑色毛发)的圆形纤维的R瓣。在背光的情况下(c,d),光掠过纤维的边缘,并表现出更明亮的更聚焦的响应(见(e),其中叶压缩和高|φ |变亮)。
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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