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Non-uniform system response detection for hyperspectral imaging systems

机译:高光谱成像系统的非均匀系统响应检测

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Near infrared (NIR) hyperspectral imaging (HSI) has established itself as a powerful non-destructive tool for the chemical analysis of heterogeneous samples. However, one of the main disadvantages of NIR HSI is that the technique suffers from instrumentation-related problems, which in turn affect the acquired images. In general, focal plane array (FPA) based hyperspectral systems are affected by spatial and spectral non-uniform response, the presence of defective sensors (e.g. dead or saturated sensors), and temporal and spatial (e.g. dark current) noise. Another issue is each new camera system needs to be calibrated to assess its specific responses to light. To correct for these issues, we used known standards to measure the response of the sensors and capture the location of the field of view and defective sensors using linear and quadratic models. The parameters of these models were then used as input features for classification of sensor responses using a k-means algorithm. The results conclude that linear models are insufficiently precise for calibration but estimate sufficiently accurately the system's response and functionality. Specifically, it was shown that the classification method discriminates non-responsive regions effectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:近红外(NIR)高光谱成像(HSI)本身已成为用于异质样品化学分析的强大无损工具。但是,NIR HSI的主要缺点之一是该技术存在与仪器相关的问题,这反过来又影响了采集的图像。通常,基于焦平面阵列(FPA)的高光谱系统会受到空间和频谱非均匀响应,存在缺陷传感器(例如死传感器或饱和传感器)以及时间和空间(例如暗电流)噪声的影响。另一个问题是,每个新的摄像头系统都需要进行校准,以评估其对光的特定响应。为了纠正这些问题,我们使用了已知的标准来测量传感器的响应,并使用线性和二次模型来捕获视野和有缺陷的传感器的位置。然后将这些模型的参数用作输入特征,以使用k均值算法对传感器响应进行分类。结果表明,线性模型对于校准而言不够精确,但是对系统的响应和功能却足够准确地进行了估计。具体地,表明分类方法有效地区分了非响应区域。 (C)2015 Elsevier B.V.保留所有权利。

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