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Vicarious Calibration of S-NPP/VIIRS Day-Night Band

机译:S-NPP / VIIRS昼夜波段的替代校准

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The Day Night Band (DNB) of the Visible Infrared Imaging Radiometer Suite (VIIRS) onboard the Suomi National Polar-orbiting Partnership (S-NPP) satellite provides imagery of clouds and other Earth features over illumination levels ranging from full sunlight to quarter moon. In order to cover this extremely broad measurement range, the DNB employs four imaging arrays that comprise three gain stages. The low gain stage (LGS) gain values are determined by solar diffuser data. In operation, the medium and high gain stage values are determined by multiplying the LGS gains by the medium gain stage (MGS)/LGS and high gain stage (HGS)/LGS gain ratios, respectively. This paper demonstrates a scheme of using DNB observation of ground vicarious sites under lunar illumination at night to independently verify the radiometric accuracy of HGS of DNB. We performed vicarious calibration of DNB when S-NPP flies above the vicarious site such as Dome C in Antarctic and Greenland in northern hemisphere at night and the moon illuminates the site with lunar phase being more than half moon. Lunar spectral irradiance model as a function of Sun-Earth-Moon distances and lunar phase is used to assist the determination of top-of-atmosphere reflectance at the vicarious site. Analysis of the vicariously-derived reflectance from DNB observations show agreement with the reflectance derived from Hyperion observations of the vicarious sites.
机译:Suomi国家极地轨道合作伙伴计划(S-NPP)卫星上的可见红外成像辐射计套件(VIIRS)的昼夜波段(DNB)可提供从满日照到四分之一月光照度范围内的云层和其他地球特征的图像。为了覆盖这一极宽的测量范围,DNB采用了四个成像阵列,其中包括三个增益级。低增益级(LGS)增益值由太阳能扩散器数据确定。在操作中,通过将LGS增益分别乘以中增益级(MGS)/ LGS和高增益级(HGS)/ LGS增益比来确定中增益级和高增益级的值。本文提出了一种利用DNB在夜间月球照明下观察地面替代物的方案,以独立验证DNB HGS的辐射精度。当S-NPP夜间在南极半球的南极Dome C和北半球的格陵兰等替代性站点上方飞行,月亮照亮月相超过半月的地点时,我们对DNB进行了替代性校准。月球光谱辐照度模型是太阳-地球-月亮距离和月相的函数,用于辅助确定替代站点的大气最高反射率。从DNB观测值得出的替代物反射率的分析表明,与从Hyperion观测到的替代位点得到的反射率一致。

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