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Compressive sensing sectional imaging for single-shot in-line self-interference incoherent holography

机译:单次在线自干涉非相干全息图像的压缩传感截面成像

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摘要

A numerical reconstruction method based on compressive sensing (CS) for self-interference incoherent digital holography (SIDH) is proposed to achieve sectional imaging by single-shot in-line self-interference incoherent hologram. The sensing operator is built up based on the physical mechanism of SIDH according to CS theory, and a recovery algorithm is employed for image restoration. Numerical simulation and experimental studies employing LEDs as discrete point-sources and resolution targets as extended sources are performed to demonstrate the feasibility and validity of the method. The intensity distribution and the axial resolution along the propagation direction of SIDH by angular spectrum method (ASM) and by CS are discussed. The analysis result shows that compared to ASM the reconstruction by CS can improve the axial resolution of SIDH, and achieve sectional imaging. The proposed method may be useful to 3D analysis of dynamic systems. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种基于压缩感知(CS)的自干涉非相干数字全息重建方法,以单次在线自干涉非相干全息图实现断层成像。根据CSDH理论,基于SIDH的物理机制建立了感知算子,并采用恢复算法进行图像复原。进行了以LED为离散点源和分辨率目标为扩展源的数值模拟和实验研究,证明了该方法的可行性和有效性。利用角谱法(ASM)和CS对SIDH沿传播方向的强度分布和轴向分辨率进行了讨论。分析结果表明,与ASM相比,CS重建可以提高SIDH的轴向分辨率,并实现断层成像。所提出的方法可能对动态系统的3D分析有用。 (C)2015 Elsevier B.V.保留所有权利。

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