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Optical Calibration of a Digital Micromirror Device (DMD)-based Compressive Imaging (CI) System

机译:数字微镜装置的光学校准(DMD)基于压缩成像(CI)系统

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Compressive imaging (CI) system is a novel electro-optical imaging system design, which uses a single-pixel photo detector to capture two dimensional (2D) images. Instead of sampling the image directly by the sensor following the classic Nyquist-Shannon sampling theorem, CI systems insert a measurement layer between the image formation and the image recording media so that projection measurement matrices used to conduct compressive sampling can be effectively introduced to the imaging process. The Digital Micromirror Device (DMD) can be used to implement the projection measurement matrices. The imaging performance of a DMD based CI system relies more than just on the imaging optics and the pixel size of the sensor. It also depends on the design of the measurement matrices and their physical representations by the DMD. In the present work, we implemented three compressive sampling methods with the DMD, namely the random basis under-sampling method, the random sampling method in the Hadamard space and the variable density sampling method in the Hadamard space. We experimentally demonstrated that the design and implementation of these methods have a direct impact on the imaging performance of the CI system. We tested the system with different sampling ratios, DMD mirror configurations and imaging optics. Their influences on the reconstructed image quality are demonstrated by experimental results. Lastly, we discussed the illumination issue of the reconstructed image, which is not related to resolution, but is important for our visual perception of the reconstructed image.
机译:压缩成像(CI)系统是一种新颖的电 - 光学成像系统设计,它采用一个单像素光电检测器捕获的二维(2D)图像。代替通过经典的采样定理以下传感器中的图像直接进行采样的,插入的图像形成和图像记录介质之间的测量层CI系统中,以便用于进行压缩采样该投影测量矩阵可以被有效地引入到成像过程。数字微镜器件(DMD)可以用于实现投影测量矩阵。一个DMD基于CI系统的成像性能依赖不仅仅是在成像光学器件和传感器的像素尺寸以上。这也取决于由DMD测量矩阵及其物理表示的设计。在目前的工作中,我们实施了三个压缩采样方法与DMD,即随机的基础下采样方法中,在空间阿达玛的随机抽样的方法和在阿达玛空间变密度采样方法。我们实验证明,这些方法的设计和实施对CI系统的成像性能有直接影响。我们测试了该系统具有不同的采样率,DMD镜结构和成像光学器件。他们对重建图像质量的影响通过实验结果表明。最后,我们讨论了重建的图像,这是不相关的分辨率的照明问题,但对我们的重建图像的视觉感受非常重要。

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