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基于单像素探测器的三维计算成像。

3D computational imaging with single-pixel detectors.

机构信息

Scottish Universities Physics Alliance, School of Physics and Astronomy, University of Glasgow, Glasgow G12 8QQ, UK.

出版信息

Science. 2013 May 17;340(6134):844-7. doi: 10.1126/science.1234454.

Abstract

Computational imaging enables retrieval of the spatial information of an object with the use of single-pixel detectors. By projecting a series of known random patterns and measuring the backscattered intensity, it is possible to reconstruct a two-dimensional (2D) image. We used several single-pixel detectors in different locations to capture the 3D form of an object. From each detector we derived a 2D image that appeared to be illuminated from a different direction, even though only a single digital projector was used for illumination. From the shading of the images, the surface gradients could be derived and the 3D object reconstructed. We compare our result to that obtained from a stereophotogrammetric system using multiple cameras. Our simplified approach to 3D imaging can readily be extended to nonvisible wavebands.

摘要

计算成像技术通过使用单像素探测器来获取物体的空间信息。通过投影一系列已知的随机图案并测量反向散射强度,可以重建二维(2D)图像。我们使用了几个位于不同位置的单像素探测器来捕获物体的三维形状。从每个探测器中,我们得出了一个似乎从不同方向照明的 2D 图像,尽管仅使用了一个数字投影仪进行照明。从图像的阴影中,可以得出表面梯度,并重建三维物体。我们将我们的结果与使用多个相机的立体摄影测量系统的结果进行了比较。我们的简化三维成像方法可以很容易地扩展到不可见的波段。

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