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Three-dimensional single-pixel compressive reflectivity imaging based on complementary modulation

机译:基于互补调制的三维单像素压缩反射率成像

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摘要

A three-dimensional (3D) imager with a single-pixel detector and complementary intensity modulation of a digital micromirror device (DMD) array, which does not rely on scene raster scanning as in light detection and ranging (LIDAR) or on a two-dimensional array of sensors as used in time-of-flight (TOF) cameras, can not only capture full-color, high-quality images of real-life objects, but also recover the depth information and 3D reflectivity of the scene, reducing the required measurement dimension as well as the complexity, and cutting the cost of the detector array down to a single unit. The imager achieves spatial resolution using compressed sensing to exploit the sparsity of the signal. The disparity maps of the scene are reconstructed using sum of absolute or squared differences to reveal the depth information. This nonscanning, low-complexity 3D reflectivity imaging prototype may be of considerable value to various computer vision applications. (C) 2015 Optical Society of America
机译:具有单像素检测器和数字微镜设备(DMD)阵列的互补强度调制的三维(3D)成像器,它不像光检测和测距(LIDAR)那样依赖场景光栅扫描,也不依赖于二维光栅飞行时间(TOF)相机中使用的传感器的三维阵列,不仅可以捕获现实对象的全彩,高质量图像,而且还可以恢复场景的深度信息和3D反射率,从而减少了所需的测量尺寸以及复杂性,并将检测器阵列的成本降低到一个单元。成像器使用压缩感测来利用信号的稀疏性来实现空间分辨率。使用绝对或平方差之和重建场景的视差图以显示深度信息。这种非扫描,低复杂度的3D反射率成像原型对于各种计算机视觉应用而言可能具有相当大的价值。 (C)2015年美国眼镜学会

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