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Atmospheric correction against algorithm for NOAA-AVHRR products: theory and application

机译:针对NOAA-AVHRR产品的算法进行大气校正:理论与应用

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Investigation of the effect of atmospheric constituents on NOAA Advanced Very High Resolution Radiometer (AVHRR) visible and near-infrared data is presented. The general remote sensing equation, including scattering, absorption, and bidirectional reflectance effects for the AVHRR solar bands, is described. The magnitude of the atmospheric effects for AVHRR solar bands with respect to their impact on the normalized difference vegetation index (NDVI) and the surface bidirection reflectance is examined. Possible approaches for acquiring atmospheric information are discussed, and examples of atmospheric correction of surface reflectance and NDVI are given. Invariant effects (ozone absorption and molecular scattering) and variant effects (water vapor absorption and aerosol scattering) are shown to dominate the atmospheric effects in the AVHRR solar bands.
机译:提出了大气成分对NOAA先进超高分辨率辐射计(AVHRR)可见和近红外数据的影响的研究。描述了一般的遥感方程,包括AVHRR太阳波段的散射,吸收和双向反射效应。就AVHRR太阳波段对归一化差异植被指数(NDVI)和表面双向反射率的影响而言,对大气影响的大小进行了检查。讨论了获取大气信息的可能方法,并给出了大气表面反射率和NDVI的校正示例。不变效应(臭氧吸收和分子散射)和变异效应(水蒸气吸收和气溶胶散射)显示出在AVHRR太阳波段的大气效应中占主导地位。

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