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Phenomenological modeling of surface roughness for predicting reflection from targets

机译:从目标预测反射的表面粗糙度的现象学建模

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Exact wave theories of specular reflectance from rough surfaces are computationally intractable thus motivating the practical need for geometric reflectance models which treat only the geometric ray nature of light reflection. The cornerstone of geometric reflectance modeling from rough surfaces in computer vision and computer graphics over the past two decades has been the Torrance-Sparrow model. This model has worked well as an intuitive description of rough surfaces as a collection of planar Fresnel reflectors called microfacets together with the concept of geometric attenuation for light which is obscured during reflection under an assumed rough surface geometry. Experimental data and analysis show that the current conceptualization of how specularly reflected light rays geometrically interact with rough surfaces needs to be seriously revised. The Torrance-Sparrow model while in qualitative agreement with specular reflection from rough surfaces is seen to be quantitatively inaccurate. Furthermore there are conceptual inconsistencies upon which derivation of this reflectance model is based. We show how significant quantitative improvement can be achieved for a geometric reflectance model by making some fundamental revisions to notions of microfacet probability distributions and geometric attenuation. Work is currently undergoing, to relate physical surface reconstructions from Atomic Force Microscope data to reflectance data from these same surfaces.
机译:精确波从粗糙表面的镜面反射率的理论是难以计算从而激励为几何模型的反射率,其仅处理光反射的几何射线性质的实际需要。从计算机视觉和计算机图形学粗糙表面的几何造型的反射率在过去二十年的基石是托兰斯 - 麻雀模型。这种模式工作以及粗糙表面的直观描述为平面菲涅耳反射镜的集合称为microfacets几何衰减的针对其反射在所假定的粗糙表面几何遮挡光的概念一起。实验数据和分析表明如何镜面反射光线的当前概念化几何相互作用具有粗糙表面的需要认真修订。同时与从粗糙表面正反射定性一致托伦斯-麻雀模型被看作是不准确的定量。此外,还有概念不一致,这便是反射模型的推导是基于。我们将展示如何显著定量的改善可以为几何反射模型通过使一些根本性修订微面概率分布和几何衰减的概念来实现。工作目前正在进行,从这些相同的表面涉及从原子力显微镜数据物理表面重建到反射数据。

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