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A Snapshot Multispectral Imager with Integrated, Tiled Filters and Optical Duplication

机译:具有集成的平铺滤镜和光学复制功能的快照多光谱成像仪

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摘要

Although the potential of spectral imaging has been demonstrated in research environments, its adoption by industry has so far been limited due to the lack of high speed, low cost and compact spectral cameras. We have previously presented work to overcome this limitation by monolithically integrating optical interference filters on top of standard CMOS image sensors for high resolution pushbroom hyperspectral cameras. These cameras require a scanning of the scene and therefore introduce operator complexity due to the need for synchronization and alignment of the scanning to the camera. This typically leads to problems with motion blur, reduced SNR in high speed applications and detection latency and overall restricts the types of applications that can use this system. This paper introduces a novel snapshot multispectral imager concept based on optical filters monolithically integrated on top of a standard CMOS image sensor. By using monolithic integration for the dedicated, high quality spectral filters at its core, it enables the use of mass-produced fore-optics, reducing the total system cost. It overcomes the problems mentioned for scanning applications by snapshot acquisition, where an entire multispectral data cube is sensed at one discrete point in time. This is achieved by applying a novel, tiled filter layout and an optical sub-system which simultaneously duplicates the scene onto each filter tile. Through the use of monolithically integrated optical filters it retains the qualities of compactness, low cost and high acquisition speed, differentiating it from other snapshot spectral cameras based on heterogeneously integrated custom optics. Moreover, thanks to a simple cube assembly process, it enables real-time, low-latency operation. Our prototype camera can acquire multispectral image cubes of 256×256 pixels over 32 bands in the spectral range of 600-1000nm at a speed of about 30 cubes per second at daylight conditions up to 340 cubes per second at higher illumination levels as typically used in machine vision applications.
机译:尽管在研究环境中已经证明了光谱成像的潜力,但是由于缺乏高速,低成本和紧凑的光谱相机,迄今为止,其在业界的应用受到限制。以前,我们已经提出了通过在标准CMOS图像传感器的顶部单片集成光学干涉滤镜(用于高分辨率推扫式高光谱相机)来克服此限制的工作。这些相机需要对场景进行扫描,因此由于需要将扫描与相机同步和对齐而导致操作员复杂化。这通常会导致运动模糊,高速应用程序中的SNR降低以及检测延迟等问题,并且总体上限制了可以使用此系统的应用程序的类型。本文介绍了一种新颖的快照多光谱成像器概念,该概念基于单片集成在标准CMOS图像传感器顶部的光学滤波器。通过将单片集成用于其核心的专用,高质量光谱滤波器,它可以使用量产的前光学器件,从而降低了总体系统成本。它克服了快照捕获扫描应用程序中提到的问题,快照捕获是在一个离散的时间点感测到整个多光谱数据立方体。这是通过应用新颖的,平铺的滤镜布局和光学子系统实现的,该子系统同时将场景复制到每个滤镜块上。通过使用单片集成光学滤镜,它保留了紧凑,低成本和高采集速度的品质,这使其与基于异构集成定制光学器件的其他快照光谱相机有所不同。此外,由于简单的多维数据集组装过程,它使实时,低延迟的操作成为可能。我们的原型相机可以在600-1000nm光谱范围内的32个波段上以256×256像素的多光谱图像立方体,在日光条件下,以每秒约30立方的速度,在更高的照明水平下,每秒可达340立方,通常用于机器视觉应用。

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