DOME II: A Parallelized BTF Acquisition System

Christopher Schwartz, Ralf Sarlette, Michael Weinmann, R. Klein
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引用次数: 53

Abstract

Bidirectional Texture Functions (BTFs) provide a realistic depiction of the appearance of many real-world materials as they contain the spatially varying light scattering behavior of the material surface. Since editing of existing BTF data is still in its early stages, materials have to be measured from real-world samples. In contrast to the related Spatially Varying BRDFs (SVBRDFs), the reflectance information encoded in a BTF also includes non-local scattering effects and therefore does not obey energy conservation or reciprocity. While this higher degree of freedom also contributes to an increased realism, it inadvertently calls for an extensive measurement of reflectance samples, as many regularization approaches from BRDF measurement do not apply. In this paper, we present an automated, parallelized, robust, fast and transportable setup for the acquisition of BTFs from flat samples as well as 3D objects using camera and light arrays: the DOME II. In contrast to previous camera array approaches, the present setup, which is comprised of high-quality industry grade components, overcomes several issues regarding stability, reliability and precision. It achieves a well balanced state-of-the-art acquisition performance in terms of speed and quality at reasonable costs.
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并行BTF采集系统
双向纹理函数(btf)提供了许多现实世界材料外观的逼真描述,因为它们包含了材料表面空间变化的光散射行为。由于现有BTF数据的编辑仍处于早期阶段,材料必须从现实世界的样本中进行测量。与相关的空间变化brdf (svbrdf)相比,BTF编码的反射信息还包含非局部散射效应,因此不遵循能量守恒或互易性。虽然这种更高的自由度也有助于提高真实感,但它无意中要求对反射样本进行广泛的测量,因为BRDF测量的许多正则化方法并不适用。在本文中,我们提出了一种自动化、并行化、鲁棒化、快速和可移动的装置,用于使用相机和光阵列从平面样品和3D物体中获取btf: DOME II。与以前的相机阵列方法相比,目前的设置由高质量的工业级组件组成,克服了稳定性,可靠性和精度方面的几个问题。它以合理的成本在速度和质量方面实现了良好平衡的最先进的采办性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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