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Sensing matrix design for spatially-selective compressive spectral imaging

机译:空间选择性压缩光谱成像的传感矩阵设计

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摘要

Compressive Spectral Imaging (CSI) is a feasible technique for capturing three-dimensional spatio-spectral information of a scene using fewer measurements than those required by traditional methods. The Coded Aperture Snapshot Spectral Imaging (CASSI) system is an optical architecture that exploits the CSI theory capturing the spectral information by means of coded apertures to take two-dimensional compressed measurements. In the CASSI system, the sensing matrix design is established by the coded apertures used in the sensing process. Moreover, the quality of reconstructions depends on the optimal coded aperture designs. In many applications, the information of interest is often found in a specific area of the scene, thus a spatially-selective sensing process is desired. However, the traditional CASSI system generally scans the whole scene even when recovering just an area of interest is required. Hence, this paper presents the analysis of several coded aperture designs that provide a sensing matrix for obtaining more information around a specific area of interest in comparison with the rest of the scene. Several simulations show that the image quality attained with the proposed approach is similar to the traditional non-selective coded apertures, requiring 3 snapshots less. Furthermore, when spatially-selective coded aperture designs are used with a fixed number of snapshots, the reconstructions are improved in up to 1 dB of PSNR (peak signal-to-noise ratio) with respect to the non-selective system in the area of interest.
机译:压缩光谱成像(CSI)是一种使用比传统方法所需的测量更少的测量来捕获场景的三维空间光谱信息的可行技术。编码孔径快照光谱成像(CASSI)系统是一种光学体系结构,利用CSI理论通过编码孔径捕获光谱信息以进行二维压缩测量。在CASSI系统中,感测矩阵设计由感测过程中使用的编码孔径建立。此外,重建的质量取决于最佳的编码孔径设计。在许多应用中,通常在场景的特定区域中找到感兴趣的信息,因此需要空间选择性感测过程。但是,即使仅需要恢复感兴趣的区域,传统的CASSI系统通常也会扫描整个场景。因此,本文提出了对几种编码孔径设计的分析,这些孔径设计提供了一个感测矩阵,以便与场景的其余部分相比,可以在感兴趣的特定区域周围获取更多信息。若干仿真结果表明,所提方法获得的图像质量与传统的非选择性编码孔径相似,所需快照减少了3个。此外,当在固定数量的快照中使用空间选择性编码孔径设计时,相对于非选择性系统,重建区域的PSNR(峰值信噪比)最高可提高1 dB。利益。

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