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Bidirectional reflectance function in coastal waters: modeling and validation

机译:沿海水域的双向反射功能:建模和验证

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The current operational algorithm for the correction of bidirectional effects from the satellite ocean color data is optimized for typical oceanic waters. However, versions of bidirectional reflectance correction algorithms, specifically tuned for typical coastal waters and other case 2 conditions, are particularly needed to improve the overall quality of those data. In order to analyze the bidirectional reflectance distribution function (BRDF) of case 2 waters, a dataset of typical remote sensing reflectances was generated through radiative transfer simulations for a large range of viewing and illumination geometries. Based on this simulated dataset, a case 2 water focused remote sensing reflectance model is proposed to correct above-water and satellite water leaving radiance data for bidirectional effects. The proposed model is first validated with a one year time series of in situ above-water measurements acquired by collocated multi- and hyperspectral radiometers which have different viewing geometries installed at the Long Island Sound Coastal Observatory (LISCO). Match-ups and intercomparisons performed on these concurrent measurements show that the proposed algorithm outperforms the algorithm currently in use at all wavelengths.
机译:针对典型海洋水域优化了用于校正来自卫星海洋颜色数据的双向影响的当前操作算法。但是,特别需要针对典型沿海水域和其他情况2条件进行了专门调整的双向反射校正算法,以提高这些数据的整体质量。为了分析案例2水域的双向反射率分布函数(BRDF),通过辐射转移模拟针对大范围的观察和照明几何图形生成了典型遥感反射率的数据集。在此模拟数据集的基础上,提出了一种案例2的水聚焦遥感反射率模型,以校正水上和卫星水留下的辐射数据的双向影响。首先使用由并置的多光谱辐射计和高光谱辐射计获得的一年时间原位水上测量值对所提出的模型进行验证,这些辐射计在长岛声音海岸天文台(LISCO)安装了不同的观测几何形状。在这些同时进行的测量中进行的比对和比对表明,所提出的算法在所有波长下均优于当前使用的算法。

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