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Perceptually Validated Cross-Renderer Analytical BRDF Parameter Remapping

机译:感知验证了跨渲染器分析BRDF参数重新映射

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摘要

Material appearance of rendered objects depends on the underlying BRDF implementation used by rendering software packages. A lack of standards to exchange material parameters and data (between tools) means that artists in digital 3D prototyping and design, manually match the appearance of materials to a reference image. Since their effect on rendered output is often non-uniform and counter intuitive, selecting appropriate parameterisations for BRDF models is far from straightforward. We present a novel BRDF remapping technique, that automatically computes a mapping (BRDF Difference Probe) to match the appearance of a source material model to a target one. Through quantitative analysis, four user studies and psychometric scaling experiments, we validate our remapping framework and demonstrate that it yields a visually faithful remapping among analytical BRDFs. Most notably, our results show that even when the characteristics of the models are substantially different, such as in the case of a phenomenological model and a physically-based one, our remapped renderings are indistinguishable from the original source model.
机译:渲染对象的材料外观取决于渲染软件包使用的底层BRDF实现。缺乏标准来交换材料参数和数据(工具之间)意味着数字3D原型设计和设计中的艺术家,手动将材料的外观与参考图像匹配。由于它们对渲染输出的影响通常是不均匀的并且是反向直观的,因此为BRDF模型选择适当的参数远离直截了当。我们提出了一种新颖的BRDF重新映射技术,它自动计算映射(BRDF差探针)以将源材料模型的外观与目标匹配匹配。通过定量分析,四个用户研究和心理测量缩放实验,我们验证了我们的重复框架,并证明它在分析BRDF之间产生了视觉忠实的重新映射。最值得注意的是,我们的结果表明,即使当模型的特征基本上是不同的,例如在现象学模型的情况和物理上的情况下,我们的重新映射渲染是与原始源模型无法区分的。

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