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Deriving Aerosol Parameters from in-situ Spectrometer Measurements for Validation of Remote Sensing Products

机译:从原位光谱仪测量中得出气溶胶参数以验证遥感产品

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Uncertainties of aerosol parameters are the limiting factor for atmospheric correction over inland and coastal waters. For validating remote sensing products from these optically complex and spatially inhomogeneous waters the spatial resolution of automated sun photometer networks like AERONET is too coarse and additional measurements on the test site are required. We have developed a method which allows the derivation of aerosol parameters from measurements with any spectrometer with suitable spectral range and resolution. This method uses a pair of downwelling irradiance and sky radiance measurements for the extraction of the turbidity coefficient and aerosol Angstrom exponent. The data can be acquired fast and reliable at almost any place during a wide range of weather conditions. A comparison to aerosol parameters measured with a Cimel sun photometer provided by AERONET shows a reasonable agreement for the Angstrom exponent. The turbidity coefficient did not agree well with AERONET values due to fit ambiguities, indicating that future research should focus on methods to handle parameter correlations within the underlying model.
机译:气溶胶参数的不确定性是内陆和沿海水域进行大气校正的限制因素。为了从这些光学复杂且空间不均匀的水中验证遥感产品,自动太阳光度计网络(如AERONET)的空间分辨率太粗糙,需要在测试现场进行额外的测量。我们已经开发出一种方法,该方法可以从任何具有合适光谱范围和分辨率的光谱仪进行测量得出气溶胶参数。该方法使用一对下降流辐照度和天空辐射度测量值来提取浊度系数和气溶胶埃斯通指数。在广泛的天气条件下,几乎可以在任何地方快速,可靠地获取数据。用AERONET提供的Cimel太阳光度计测量的气溶胶参数的比较表明,埃斯特罗姆指数是合理的。由于拟合不确定性,浊度系数与AERONET值不太吻合,这表明未来的研究应将重点放在处理基础模型内参数相关性的方法上。

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