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Toward a Perceptually Based Metric for BRDF Modeling

机译:对BRDF建模的感知基于度量

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Measured materials are used in computer graphics to enhance the realism of synthetic images. They are often approximated with analytical models to improve storage efficiency and allow for importance sampling. However, the error metrics used in the optimization procedure do not have a perceptual basis and the obtained results do not always correspond to the best visual match. In this paper we present a first steps towards creating a perceptually-based metric for BRDF modeling. First, a set of measured materials were approximated with different error metrics and analytical BRDF models. Next, a psychophysical study was performed to compare the visual fidelity obtained using different error metrics and models. The results of this study show that the cube root metric leads to a better perceptual approximation than other RMS based metrics, independently of the analytical BRDF model used. More benefit of using the cube root metric compared to the RMS based metrics is obtained for sharp specular lobes, and as the specular lobe broadens the benefit of using the cube root metric decreases. The use of the cube root error metric will improve the visual fidelity of renderings made using BRDF approximations and expand the usage of measured materials in computer graphics.
机译:测量材料用于计算机图形,以增强合成图像的现实。它们通常与分析模型近似以提高储存效率并允许重视采样。然而,优化过程中使用的错误指标没有感知基础,并且获得的结果并不总是对应于最佳视觉匹配。在本文中,我们展示了一种迈出了一种创建基于感知的公制的BRDF建模的步骤。首先,用不同的误差度量和分析BRDF模型近似一组测量材料。接下来,进行心理物理学研究以比较使用不同误差度量和模型获得的视觉保真度。该研究的结果表明,立方根度量导致比所使用的分析BRDF模型的基于RMS的度量更好地导致比其他RMS的度量更好的感知近似。使用与基于RMS的度量相比使用立方体根本度量的更多好处是针对尖锐的镜瓣获得的,并且由于镜面叶片扩大了使用立方体根本度量的益处。立方根误差度量的使用将提高使用BRDF近似制造的渲染的视觉保真度,并在计算机图形中扩展测量材料的使用情况。

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