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MULTISPECTRAL OR HYPERSPECTRAL IMAGING SYSTEM AND METHOD FOR TACTICAL RECONNAISSANCE

机译:多光谱或超光谱成像系统和战术一致性的方法

摘要

A two-dimensional focal plane array (46) is divided into sub-arrays of rows and columns of pixels, each sub-array being responsive to light energy from a target object which has been separated by a spectral filter (42) or other spectrum dividing element into a predetermined number of spectral bands. There is preferably one sub-array on the FPA for each predetermined spectral band. Each sub-array has its own read out channel to allow parallel and simultaneous readout of all sub-arrays of the array. The scene is scanned onto the array for simultaneous imaging of the terrain in many spectral bands. Time Delay and Integrate (TDI) techniques are used as a clocking mechanism within the sub-arrays to increase the signal to noise ratio (SNR) of the detected image. Additionally, the TDI length (i.e., number of rows of integration during the exposure) within each sub-array is adjustable to optimize and normalize the response of the photosensitive substrate to each spectral band. The array (46) provides for parallel and simultaneous readout of each sub-array to increase the collection rate of the spectral imagery. All of these features serve to provide a substantial improvement in the area coverage of a hyperspectral imaging system while at the same time increasing the SNR of the detected spectral image.
机译:二维焦平面阵列(46)被分成像素的行和列的子阵列,每个子阵列响应于来自目标物体的光能,该光能已经被光谱滤波器(42)或其他光谱分离将元素划分为预定数量的光谱带。对于每个预定频谱带,在FPA上最好有一个子阵列。每个子阵列都有自己的读取通道,以允许并行和同时读取阵列中的所有子阵列。将场景扫描到阵列上,以便同时在许多光谱带中对地形进行成像。时延和积分(TDI)技术用作子阵列中的时钟机制,以提高检测到的图像的信噪比(SNR)。另外,每个子阵列内的TDI长度(即曝光期间积分的行数)是可调节的,以优化和归一化感光衬底对每个光谱带的响应。阵列(46)提供每个子阵列的并行和同时读出,以增加光谱图像的收集率。所有这些特征用于在高光谱成像系统的区域覆盖率方面提供实质性的改进,同时增加所检测光谱图像的SNR。

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