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Experiments with a low-cost system for computer graphics material model acquisition

机译:使用低成本系统进行计算机图形材料模型获取的实验

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We consider the design of an inexpensive system for acquiring material models for computer graphics rendering applications in animation, games and conceptual design. To be useful in these applications a system must be able to model a rich range of appearances in a computationally tractable form. The range of appearance of interest in computer graphics includes materials that have spatially varying properties, directionality, small-scale geometric structure, and subsurface scattering. To be computationally tractable, material models for graphics must be compact, editable, and efficient to numerically evaluate for ray tracing importance sampling. To construct appropriate models for a range of interesting materials, we take the approach of separating out directly and indirectly scattered light using high spatial frequency patterns introduced by Nayar et al. in 2006. To acquire the data at low cost, we use a set of Raspberry Pi computers and cameras clamped to miniature projectors. We explore techniques to separate out surface and subsurface indirect lighting. This separation would allow the fitting of simple, and so tractable, analytical models to features of the appearance model. The goal of the system is to provide models for physically accurate renderings that are visually equivalent to viewing the original physical materials.
机译:我们考虑了用于获取计算机图形渲染应用中的材料模型的廉价系统的设计,在动画,游戏和概念设计中。在这些应用中有用,系统必须能够以计算贸易形式模拟丰富的外观。计算机图形学感兴趣的外观范围包括具有空间不同性质,方向性,小规模几何结构和地下散射的材料。要进行计算贸易,图形的材料模型必须紧凑,可编辑和高效,以便在数值评估光线跟踪重要性采样。为了构建各种有趣的材料的适当模型,我们采取了使用Nayar等人引入的高空间频率模式分离出直接和间接散射光的方法。在2006年以低成本获取数据,我们使用一套覆盆子PI计算机和相机夹紧到微型投影仪。我们探索分离表面和地下间接照明的技术。这种分离将允许简单,并且如此易行的分析模型的拟合到外观模型的特征。该系统的目标是为物理准确的渲染提供模型,这些渲染在视觉上等同于观看原始物理材料。

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