Lin Di, Hashemi Connor, Leger James R
J Opt Soc Am A Opt Image Sci Vis. 2020 Apr 1;37(4):540-551. doi: 10.1364/JOSAA.377821.
We present a methodology for recovering the perspective imagery of a non-line-of-sight scene based on plenoptic observations of indirect photons scattered from a homogeneous surface. Our framework segregates the visual contents observed along the scattering surface into angular and spatial components. Given the reflectance characteristics of the scatterer, we show that the former can be deduced from scattering measurements employing diversity in angle at individual surface points, whereas the latter can be deduced from captured images of the scatterer based on prior knowledge of occlusions within the scene. We then combine the visual contents from both components into a plenoptic modality capable of imaging at higher resolutions than what is allowed by the angular information content and discriminating against extraneous signals in complex scenes that spatial information struggles to discern. We demonstrate the efficacy of this approach by reconstructing the imagery of test scenes from both synthetic and measured data.
我们提出了一种基于从均匀表面散射的间接光子的全光观测来恢复非视线场景透视图像的方法。我们的框架将沿散射表面观察到的视觉内容分离为角度和空间分量。给定散射体的反射特性,我们表明前者可以通过在各个表面点采用角度多样性的散射测量来推导,而后者可以基于场景内遮挡的先验知识从散射体的捕获图像中推导。然后,我们将来自两个分量的视觉内容组合成一种全光模态,该模态能够以比角度信息内容所允许的更高分辨率成像,并区分空间信息难以辨别的复杂场景中的外来信号。我们通过从合成数据和测量数据重建测试场景的图像来证明这种方法的有效性。