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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Atmospheric correction algorithms for hyperspectral remote sensing data of land and ocean
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Atmospheric correction algorithms for hyperspectral remote sensing data of land and ocean

机译:陆地和海洋高光谱遥感数据的大气校正算法

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摘要

Hyperspectral imaging data have been collected with different types of imaging spectrometers from aircraft and satellite platforms since the mid-1980s. Because the solar radiation on the sun-surface-sensor path in the 0.4-2.5 mu m visible and near-IR spectral regions is subject to absorption and scattering by atmospheric gases and aerosols, the hyperspectral imaging data contains atmospheric effects. In order to use hyperspectral imaging data for quantitative remote sensing of land surfaces and ocean color, the atmospheric effects must be removed. Over the years, atmospheric correction algorithms have evolved from the earlier empirical line method and the flat field method to more ecent methods based on rigorous radiative transfer modeling pproaches. Here, a review of hyperspectral atmospheric correction techniques is esented. Issues related to spectral smoothing are discussed. Suggestions for provements to the present atmospheric correction algorithms, mainly the addition of a module for modeling atmospheric nitrogen dioxide absorption effects in the visible, are given.
机译:自1980年代中期以来,已经使用飞机和卫星平台的不同类型的光谱仪收集了高光谱成像数据。因为在0.4-2.5μm可见光和近红外光谱区域中的太阳表面传感器路径上的太阳辐射会受到大气气体和气溶胶的吸收和散射,因此高光谱成像数据包含大气效应。为了将高光谱成像数据用于陆地表面和海洋颜色的定量遥感,必须消除大气影响。多年来,大气校正算法已经从早期的经验线方法和平面场方法演变为基于严格的辐射传递建模方法的更先进的方法。在此,对高光谱大气校正技术进行了综述。讨论了与频谱平滑相关的问题。给出了对当前大气校正算法的证明的建议,主要是增加了一个用于在可见光中模拟大气二氧化氮吸收效应的模块。

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