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Full-color stereoscopic single-pixel camera based on DMD technology

机译:基于DMD技术的全色立体单像素摄像头

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Imaging systems based on microstructured illumination and single-pixel detection offer several advantages over conventional imaging techniques. They are an effective method for imaging through scattering media even in the dynamic case. They work efficiently under low light levels, and the simplicity of the detector makes it easy to design imaging systems working out of the visible spectrum and to acquire multidimensional information. In particular, several approaches have been proposed to record 3D information. The technique is based on sampling the object with a sequence of microstructured light patterns codified onto a programmable spatial light modulator while light intensity is measured with a single-pixel detector. The image is retrieved computationally from the photocurrent fluctuations provided by the detector. In this contribution we describe an optical system able to produce full-color stereoscopic images by using few and simple optoelectronic components. In our setup we use an off-the-shelf Digital Light Projector (DLP?) based on a digital micromirror device (DMD) to generate the light patterns. To capture the color of the scene we take advantage of the codification procedure used by the DLP projector for color video projection. To record stereoscopic views we use a 90° beam splitter and two mirrors, allowing us two project the patterns form two different viewpoints. By using a single monochromatic photodiode we obtain a pair of color images that can be used as input in a 3-D display. To reduce the time we need to project the patterns we use a compressive sampling algorithm. Experimental results are shown.
机译:基于微结构照明和单像素检测的成像系统提供了优于传统成像技术的若干优点。它们是即使在动态案例中也通过散射介质进行成像的有效方法。它们在低光水平下有效地工作,检测器的简单性使得易于设计从可见光谱工作的成像系统并获取多维信息。特别地,已经提出了几种方法来记录3D信息。该技术基于对物体采样,其中具有编码在可编程空间光调制器上的微结构化光图案的序列,而用单像素检测器测量光强度。从检测器提供的光电流波动计算图像被计算地检索。在这贡献中,我们描述了一种能够通过使用少量和简单的光电子组件产生全色立体图像的光学系统。在我们的设置中,我们使用基于数字微镜设备(DMD)的货架上的数字光投影仪(DLP?)以产生光图案。为了捕获场景的颜色,我们利用DLP投影仪用于彩色视频投影的编纂过程。要记录立体视图,我们使用90°分频带和两个镜子,允许我们两个项目模式形成两个不同的观点。通过使用单色光电二极管,我们获得一对可用作3-D显示器的彩色图像。为了减少预测模式的时间,我们使用压缩采样算法。显示了实验结果。

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