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The Effects of Solar Irradiance Spectra on Calculation of Narrow Band Top-of-Atmosphere Reflectance

机译:太阳辐射光谱对窄带大气顶反射率计算的影响

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Extraterrestrial solar irradiance spectra detail the solar energy distribution over wavelengths, and numerous solar irradiance models are available within the remote sensing community. However, reference spectra may differ widely owing to differences in solar activity, measurement instruments and calibration. Six widely referenced solar spectra were selected in this work to examine their differences and the impacts of these differences on calculations of narrow band top-of-atmosphere reflectance using MERIS and Hyperion hyperspectral sensor spectral configurations. Mean solar exoatmospheric irradiance (MSEI) was computed using the different solar irradiance models and spectral response functions of the MERIS and Hyperion hyperspectral sensors. Then, the effects of MSEI on top-of-atmosphere (TOA) reflectance and the normalized difference vegetation index (NDVI) and atmospherically resistant vegetation index (ARVI) were investigated. The results show that the six selected solar irradiance models have significant differences from 350 to 2500 nm, which in turn result in differences in the MSEI derived from MERIS and Hyperion observations. These differences have a less significant effect on the TOA reflectance in the visible and near-infrared bands and on NDVI. However, the differences result in large differences in TOA reflectance in the infrared bands and in ARVI.
机译:地外太阳辐照光谱详细描述了整个波长范围内的太阳能分布,并且遥感社区中提供了许多太阳辐照模型。但是,由于太阳活动,测量仪器和校准的差异,参考光谱可能会有很大差异。在这项工作中选择了六个被广泛引用的太阳光谱,以检查它们的差异以及这些差异对使用MERIS和Hyperion高光谱传感器光谱配置计算窄带大气顶反射率的影响。使用MERIS和Hyperion高光谱传感器的不同太阳辐照度模型和光谱响应函数,计算了平均太阳大气层辐照度(MSEI)。然后,研究了MSEI对大气顶(TOA)反射率和归一化差异植被指数(NDVI)和耐大气植被指数(ARVI)的影响。结果表明,选择的六个太阳辐照度模型在350至2500 nm之间存在显着差异,这又导致了从MERIS和Hyperion观测得出的MSEI差异。这些差异对可见光和近红外波段的TOA反射率以及NDVI的影响较小。但是,差异导致红外波段和ARVI中TOA反射率的差异很大。

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