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Edge re-projection method for high-quality edge reconstruction in non-line-of-sight imaging

机译:非视线成像中高质量边缘重建的边缘再投影方法

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How to image scenes or detect objects hidden from view has been of increasing interest in recent years. Previous studies have demonstrated non-line-of-sight object reconstruction by using time-resolved detectors and a back-projection algorithm, whereas the filtered back-projection method reconstructs high-frequency spatial information, such as the edge of an object, with poor quality. Here we propose an optimized back-projection algorithm to improve the object edge reconstruction quality. We base our method on the observation that the spatial frequency and geometric information required to reconstruct an edge is distributed unevenly across scanning positions of the relay wall. Our method extracts edge voxels from the first projection result, correcting the signal response weight at different scanning positions according to their relative contributions to the object edge reconstruction, and then re-projects data. Simulations and experiments show that compared to the filtered back-projection algorithm, our method achieves better reconstruction results for the object edge, which makes it easier to distinguish the object shape. (C) 2020 Optical Society of America
机译:如何在近年来图像场景或检测隐藏的对象是越来越兴趣的。先前的研究通过使用时间分辨的检测器和背投算法表明了非视线对象重建,而滤波后投影方法重建高频空间信息,例如物体的边缘,差质量。在这里,我们提出了一种优化的反投影算法来提高对象边缘重建质量。我们基于观察的方法,即重建边缘所需的空间频率和几何信息在继电器壁的扫描位置上不均匀地分布。我们的方法从第一投影结果提取边缘体素,根据对物体边缘重建的相对贡献,校正不同扫描位置的信号响应权重,然后重新投影数据。模拟和实验表明,与过滤的背投算法相比,我们的方法实现了更好的重建结果对物体边缘,这使得更容易区分物形状。 (c)2020美国光学学会

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    《Applied optics》 |2020年第6期|共8页
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