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Retrieval of Surface Albedo Based on BRDF Model

机译:基于BRDF模型的地表反照率反演

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Land Surface Albedo is an important surface parameter and is widely applied to the surface energy balance, mid-term and long-term weather forecast and atmospheric general circulation model. GF-4 satellite is the first geostationary orbit satellite which combines high spatial resolution and high temporal resolution in China. In order to explore the feasibility of semi-empirical kernel-driven BRDF model applied on GF-4 satellite data, the earth's surface classification is joined to give kernel factors initial value, and Powell iteration algorithm is used to optimize the result of model. Then the land surface narrow band albedos of each band could be gained through angle integration on BRDF model. On this basis, combining spectral library with spectral response function of GF-4 satellite, the conversions of narrow to broadband albedo for GF-4 satellite data is built for the first time. And albedo inversion in short wave band (0.3-3μm) are acquired. Finally, cross validation used by MODIS albedo product indicates that an accurate land surface albedo could be acquired by this method.
机译:地表反照率是重要的地表参数,广泛应用于地表能量平衡,中长期天气预报和大气总环流模型。 GF-4卫星是中国第一颗结合了高空间分辨率和高时间分辨率的对地静止轨道卫星。为了探讨将半经验核驱动的BRDF模型应用于GF-4卫星数据的可行性,将地球表面分类加入核因子的初始值,并使用Powell迭代算法对模型结果进行优化。通过BRDF模型的角度积分可以得到各波段的地表窄带反照率。在此基础上,结合频谱库与GF-4卫星的频谱响应功能,首次建立了GF-4卫星数据从窄到宽带反照率的转换。并获得了短波波段(0.3-3μm)的反照率。最后,MODIS反照率产品使用的交叉验证表明,该方法可以获取准确的陆地表面反照率。

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