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BRDF Models for Accurate and Efficient Rendering of Glossy Surfaces

机译:精确有效地渲染光泽表面的BRDF模型

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摘要

This article presents two new parametric models of the Bidirectional Reflectance Distribution Function (BRDF), one inspired by the Rayleigh-Rice theory for light scattering from optically smooth surfaces, and one inspired by micro-facet theory. The models represent scattering from a wide range of glossy surface types with high accuracy. In particular, they enable representation of types of surface scattering which previous parametric models have had trouble modeling accurately. In a study of the scattering behavior of measured reflectance data, we investigate what key properties are needed for a model to accurately represent scattering from glossy surfaces. We investigate different parametrizations and how well they match the behavior of measured BRDFs. We also examine the scattering curves which are represented in parametric models by different distribution functions. Based on the insights gained from the study, the new models are designed to provide accurate fittings to the measured data. Importance sampling schemes are developed for the new models, enabling direct use in existing production pipelines. In the resulting renderings we show that the visual quality achieved by the models matches that of the measured data.
机译:本文介绍了双向反射分布函数(BRDF)的两个新参数模型,一个模型受Rayleigh-Rice理论启发,用于从光学光滑表面散射光,另一个模型则受微面理论启发。这些模型可以高精度地表示来自各种光泽表面类型的散射。特别是,它们可以表示以前的参数模型无法准确建模的表面散射类型。在对测得的反射率数据的散射行为的研究中,我们研究了模型需要哪些关键属性来准确表示来自光滑表面的散射。我们研究了不同的参数设置以及它们与所测BRDF的行为匹配程度。我们还检查了散射曲线,这些曲线在参数模型中由不同的分布函数表示。基于从研究中获得的见识,新模型旨在为测量数据提供准确的拟合。针对新模型开发了重要的采样方案,可直接在现有生产管道中使用。在最终的渲染图中,我们表明模型所实现的视觉质量与测量数据的视觉质量相匹配。

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