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Multi Focus Structured Light for Recovering Scene Shape and Global Illumination

机译:用于恢复场景形状和全局照明的多焦点结构光

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Illumination defocus and global illumination effects are major challenges for active illumination scene recovery algorithms. Illumination defocus limits the working volume of projector-camera systems and global illumination can induce large errors in shape estimates. In this paper, we develop an algorithm for scene recovery in the presence of both defocus and global light transport effects such as interreflections and sub-surface scattering. Our method extends the working volume by using structured light patterns at multiple projector focus settings. A careful characterization of projector blur allows us to decode even partially out-of-focus patterns. This enables our algorithm to recover scene shape and the direct and global illumination components over a large depth of field while still using a relatively small number of images (typically 25-30). We demonstrate the effectiveness of our approach by recovering high quality depth maps of scenes containing objects made of optically challenging materials such as wax, marble, soap, colored glass and translucent plastic.
机译:照明散焦和全局照明效果是积极照明场景恢复算法的主要挑战。照明散焦限制投影仪相机系统的工作量,全局照明可以在形状估计中引起大的误差。在本文中,我们在散焦和全局光传输效应的存在下开发一种场景恢复算法,例如孤立的折射和子表面散射。我们的方法通过在多个投影仪焦点设置下使用结构化光图案来扩展工作量。投影仪模糊的仔细表征使我们甚至可以解码部分超焦点模式。这使我们的算法能够在仍在使用相对少量的图像(通常为25-30)的同时在大景深上恢复场景形状和直接和全局照明组件。我们通过恢复包含由光学挑战材料如蜡,大理石,肥皂,彩色玻璃和半透明塑料等由光学挑战材料制成的物体制成的物体的高质量深度图来证明我们的方法的有效性。

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