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Error Analysis of Large Aperture Static Interference Imaging Spectrometer

机译:大孔径静态干涉成像光谱仪的误差分析

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Large Aperture Static Interference Imaging Spectrometer is a new type of spectrometer with light structure, high spectral linearity, high luminous flux and wide spectral range, etc ,which overcomes the contradiction between high flux and high stability so that enables important values in science studies and applications. However, there're different error laws in imaging process of LASIS due to its different imaging style from traditional imaging spectrometers, correspondingly, its data processing is complicated. In order to improve accuracy of spectrum detection and serve for quantitative analysis and monitoring of topographical surface feature, the error law of LASIS imaging is supposed to be learned. In this paper, the LASIS errors are classified as interferogram error, radiometric correction error and spectral inversion error ,and each type of error is analyzed and studied. Finally, a case study of Yaogan-14 is proposed, in which the interferogram error of LASIS by time and space combined modulation is mainly experimented and analyzed, as well as the errors from process of radiometric correction and spectral inversion .
机译:大型孔径静态干扰成像光谱仪是一种具有光结构,高光谱线性,高光通量和宽谱范围等的新型光谱仪,克服了高通量和高稳定性之间的矛盾,从而使科学研究和应用中的重要价值能够实现。然而,由于其来自传统成像光谱仪的不同的成像风格,因此,相应地,LASI的成像过程中的不同误差定律是相应的,其数据处理复杂。为了提高光谱检测的准确性和用于定量分析和地形表面特征的监测,应该学习LASIS成像的误差法。在本文中,LASIS错误被分类为干扰图误差,辐射校正误差和光谱反转误差,并分析了每种类型的错误和研究。最后,提出了一种yaogan-14的案例研究,其中随时间和空间组合调制的LASIS的干扰图误差主要是实验和分析的,以及来自辐射校正和光谱反转过程的误差。

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