漫射结构光

S. Nayar, Mohit Gupta
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引用次数: 55

摘要

如今,结构光系统被广泛应用于机器人装配、视觉检查、外科手术、娱乐、游戏和文化遗产数字化等领域。目前的结构光方法面临着两个严重的局限性。首先,它们无法处理由于镜面反射而产生强烈高光的场景区域。其次,它们无法恢复阴影区域的有用信息。我们观察到许多结构光方法使用具有平移对称的照明模式,即仅沿两个维度中的一个变化的二维模式。我们表明,对于这类图案,沿着平移轴的图案扩散可以减轻镜面和阴影的不利影响。我们展示了两种应用的结果-使用正弦模式相移的3D扫描和使用高频二进制条纹分离光传输的直接和全局分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffuse structured light
Today, structured light systems are widely used in applications such as robotic assembly, visual inspection, surgery, entertainment, games and digitization of cultural heritage. Current structured light methods are faced with two serious limitations. First, they are unable to cope with scene regions that produce strong highlights due to specular reflection. Second, they cannot recover useful information for regions that lie within shadows. We observe that many structured light methods use illumination patterns that have translational symmetry, i.e., two-dimensional patterns that vary only along one of the two dimensions. We show that, for this class of patterns, diffusion of the patterns along the axis of translation can mitigate the adverse effects of specularities and shadows. We show results for two applications - 3D scanning using phase shifting of sinusoidal patterns and separation of direct and global components of light transport using high-frequency binary stripes.
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