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基于物理的特效涂层精确数字再现。

Accurate physics-based digital reproduction of effect coatings.

作者信息

Huraibat Khalil, Perales Esther, Kirchner Eric, Van der Lans Ivo, Ferrero Alejandro, Campos Joaquín

出版信息

Opt Express. 2021 Oct 11;29(21):34671-34683. doi: 10.1364/OE.438477.

Abstract

We built an improved 3D rendering framework to accurately visualize the complete appearance of effect coatings, including metallic effects, sparkle and iridescence. Spectral reflectance measurements and sparkle indexes from a commercially available multi-angle spectrophotometer (BYKmac-i) were used together with physics-based approaches, such as flake-based reflectance models, to implement efficiently the appearance reproduction from a small number of bidirectional measurement geometries. With this rendering framework, we rendered a series of effect coating samples on an iPad display, simulating how these samples would be viewed inside a Byko-spectra effect light booth. We validated the appearance fidelity through psychophysical methods. We asked observers to evaluate the most important visual attributes that directly affect the appearance of effect coatings, i.e., the color, the angular dependence of color (color flop) and the visual texture (sparkle and graininess). Observers were asked to directly compare the rendered samples with the real samples inside the Byko-spectra effect light booth. In this study, we first validated the accuracy of rendering the color flop of effect coatings by conducting two separate visual tests, using flat and curved samples respectively. The results show an improved accuracy when curved samples were used (acceptability of 93% vs 80%). Secondly, we validated the digital reproduction of both color and texture by using a set of 30 metallic samples, and by including texture in the rendering using a sparkle model. We optimized the model parameters based on sparkle measurement data from the BYK-mac I instrument and using a matrix-adjustment model for optimization. The results from the visual tests show that the visual acceptability of the rendering is high at 90%.

摘要

我们构建了一个改进的3D渲染框架,以准确可视化效果涂层的完整外观,包括金属效果、闪光和虹彩。利用从市售多角度分光光度计(BYKmac-i)获得的光谱反射率测量值和闪光指数,结合基于物理的方法,如基于薄片的反射率模型,从少量双向测量几何结构高效实现外观再现。借助这个渲染框架,我们在iPad显示屏上渲染了一系列效果涂层样本,模拟这些样本在Byko-spectra效果灯箱内的观看效果。我们通过心理物理学方法验证了外观保真度。我们要求观察者评估直接影响效果涂层外观的最重要视觉属性,即颜色、颜色的角度依赖性(颜色翻转)和视觉纹理(闪光和颗粒感)。要求观察者将渲染样本与Byko-spectra效果灯箱内的真实样本直接进行比较。在本研究中,我们首先分别使用平面和曲面样本进行了两项独立的视觉测试,验证了渲染效果涂层颜色翻转的准确性。结果表明,使用曲面样本时准确性有所提高(可接受率分别为93%和80%)。其次,我们使用一组30个金属样本,并通过在渲染中使用闪光模型纳入纹理,验证了颜色和纹理的数字再现。我们基于BYK-mac I仪器的闪光测量数据并使用矩阵调整模型进行优化,对模型参数进行了优化。视觉测试结果表明,渲染的视觉可接受率高达90%。

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