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Diffuse reflectance model for dielectric surfaces

机译:介电表面的漫反射率模型

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Abstract: the most common assumptions for recovering object features in computer vision and rendering objects in computer graphics is that the radiance distribution of diffuse reflection from materials in Lambertian. We propose a reflectance model for diffuse reflection from smooth inhomogeneous dielectric surfaces that is empirically shown to be significantly more accurate than the Lambertian model. The resulting reflected diffuse radiance distribution has a simple mathematical form. The proposed model for diffuse reflection utilizes results of radiative transfer theory for subsurface multiple scattering. For an optically smooth surface boundary this subsurface intensity distribution becomes altered by Fresnel attenuation and Snell refraction making it become significantly non-Lambertian. We present a striking diffuse reflection effect at occluding contours of dielectric objects that is strongly deviant from Lambertian behavior, and yet is explained by our diffuse reflection model. The proposed diffuse reflection model for optically smooth surfaces can be used to describe diffuse reflection from rough dielectric surfaces by serving as the diffuse reflection law for optically smooth microfacets.!27
机译:摘要:恢复计算机视觉中的对象特征并在计算机图形中渲染对象的最常见假设是,朗伯材料中的漫反射的辐射分布。我们提出了一种用于平滑非均匀介质表面的漫反射的反射模型,根据经验,该模型比Lambertian模型精确得多。所得的反射漫反射辐射分布具有简单的数学形式。所提出的漫反射模型利用了辐射转移理论的结果进行了地下多重散射。对于光学上平滑的表面边界,该地下强度分布会因菲涅耳衰减和Snell折射而发生变化,从而变得明显非朗伯分布。我们在遮挡介电物体的轮廓处呈现了惊人的漫反射效果,这与朗伯行为有很大的偏差,但可以通过我们的漫反射模型来解释。所提议的光学光滑表面漫反射模型可通过充当光学光滑微面的漫反射定律来描述粗糙介电表面的漫反射。27

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