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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Decoupling error for the atmospheric correction in ocean color remote sensing algorithms
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Decoupling error for the atmospheric correction in ocean color remote sensing algorithms

机译:海洋色彩遥感算法中用于大气校正的去耦误差

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This paper studies the decoupling error associated with the atmospheric correction procedures in the ocean color remote sensing algorithms. The decoupling error is caused by the lack of proper consideration of multiple scattering between the atmospheric and ocean components. In other words, the atmosphere and ocean are not coupled properly. A vector radiative transfer model for the coupled atmosphere and ocean (CAO) system based on the successive order of scattering (SOS) method is used to study the error. The inherent optical properties (IOPs) of the ocean are provided by the most updated bio-optical models. Two wavelengths are used in the study, 412 and 555. nm. For a detector located just above the ocean interface, the decoupling errors range from 0.3% to 7% at 412. nm; and from 0.3% to 3 % at 555. nm for zenith viewing angles smaller than 70° The decoupling errors are significantly larger for larger zenith viewing angles for this detector. For a detector at the top of the atmosphere (TOA), it is hard to separate the decoupling error from the error introduced by the diffuse transmittance. If we assume the upwelling radiance is uniform just below the ocean surface when estimating the diffuse transmittance, the decoupling errors are from -4% to 8% for zenith viewing angles smaller than 70°; and negative decoupling errors show up at mainly large zenith viewing angles.
机译:本文研究了海洋颜色遥感算法中与大气校正程序相关的去耦误差。去耦误差是由于缺乏对大气和海洋成分之间多重散射的适当考虑引起的。换句话说,大气和海洋没有适当地耦合。利用基于连续散射序(SOS)方法的大气-海洋耦合(CAO)系统的矢量辐射传递模型来研究误差。海洋的固有光学特性(IOP)由最新的生物光学模型提供。研究中使用了两个波长:412和555. nm。对于位于海洋界面正上方的检测器,在412. nm处的去耦误差范围为0.3%至7%。对于小于70°的天顶视角,在555. nm处为0.3%至3%。对于该探测器,对于较大的天顶视角,去耦误差明显更大。对于位于大气层顶部(TOA)的检测器,很难将去耦误差与漫透射率引入的误差区分开。如果我们在估算漫透射率时假设上升流辐射在海洋表面正下方均匀,那么对于小于70°的天顶视角,去耦误差为-4%至8%。负的去耦误差主要出现在较大的天顶视角。

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