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Multispectral imaging using a single bucket detector

机译:使用单桶检测器进行多光谱成像

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摘要

Existing multispectral imagers mostly use available array sensors to separately measure 2D data slices in a 3D spatial-spectral data cube. Thus they suffer from low photon efficiency, limited spectrum range and high cost. To address these issues, we propose to conduct multispectral imaging using a single bucket detector, to take full advantage of its high sensitivity, wide spectrum range, low cost, small size and light weight. Technically, utilizing the detector’s fast response, a scene’s 3D spatial-spectral information is multiplexed into a dense 1D measurement sequence and then demultiplexed computationally under the single pixel imaging scheme. A proof-of-concept setup is built to capture multispectral data of 64 pixels × 64 pixels × 10 wavelength bands ranging from 450 nm to 650 nm, with the acquisition time being 1 minute. The imaging scheme holds great potentials for various low light and airborne applications, and can be easily manufactured as production-volume portable multispectral imagers.
机译:现有的多光谱成像仪大多使用可用的阵列传感器来分别测量3D空间光谱数据立方体中的2D数据切片。因此,它们具有光子效率低,光谱范围有限和成本高的缺点。为了解决这些问题,我们建议使用单桶检测器进行多光谱成像,以充分利用其高灵敏度,宽光谱范围,低成本,小尺寸和轻量的优势。从技术上讲,利用检测器的快速响应,将场景的3D空间光谱信息多路复用为密集的1D测量序列,然后在单像素成像方案下进行计算多路分解。建立了概念验证设置,以捕获范围为450 nm至650 nm的64个像素×64个像素×10个波段的多光谱数据,采集时间为1分钟。该成像方案在各种低照度和机载应用中具有巨大的潜力,并且可以容易地制造成可批量生产的便携式多光谱成像仪。

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