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A compact snapshot multispectral imager with a monolithically integrated, per-pixel filter mosaic

机译:紧凑的快照多光谱成像仪,具有单片集成的每像素滤镜马赛克

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摘要

The adoption of spectral imaging by industry has so far been limited due to the lack of high speed, low cost and compact spectral cameras. Moreover most state-of-the-art spectral cameras utilize some form of spatial or spectral scanning during acquisition, making them ill-suited for analyzing dynamic scenes containing movement. This paper introduces a novel snapshot multispectral imager concept based on optical filters monolithically integrated on top of a standard CMOS image sensor. 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 enabled by depositing interference filters per pixel directly on a CMOS image sensor, extending the traditional Bayer color imaging concept to multi- or hyperspectral imaging without a need for dedicated fore-optics. The monolithic deposition leads to a high degree of design flexibility. This enables systems ranging from application-specific, high spatial resolution cameras with 1 to 4 spectral filters, to hyperspectral snapshot cameras at medium spatial resolutions and filters laid out in cells of 4×4 to 6×6 or more. Through the use of monolithically integrated optical filters it further retains the qualities of compactness, low cost and high acquisition speed, differentiating it from other snapshot spectral cameras.
机译:迄今为止,由于缺乏高速,低成本和紧凑的光谱相机,光谱成像在工业上的应用受到限制。此外,大多数最先进的光谱摄像机在采集过程中都使用某种形式的空间或光谱扫描,这使其不适用于分析包含运动的动态场景。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。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。通过将每个像素的干涉滤光片直接沉积在CMOS图像传感器上,可以将传统的拜耳彩色成像概念扩展到多光谱或高光谱成像,而无需专用的前光学元件。整体式沉积导致高度的设计灵活性。这使系统的范围从具有1至4个光谱滤镜的特定用途的高空间分辨率相机,到具有中等空间分辨率的高光谱快照相机以及在4×4至6×6或更高的像元中布置的滤镜。通过使用单片集成的光学滤波器,它进一步保留了紧凑,低成本和高采集速度的品质,这使其与其他快照光谱相机区别开来。

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