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Comparison of Snow Depth Retrieval Algorithm in Northeastern China Based on AMSR2 and FY3B-MWRI Data

机译:基于AMSR2和FY3B-MWRI数据的中国东北雪深度检索算法比较

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Snow accumulation has a very important influence on the natural environment and human activities. Meanwhile, improving the estimation accuracy of passive microwave snow depth (SD) retrieval is a hotspot currently. Northeastern China is a typical snow study area including many different land cover types, such as forest, grassland and farmland. Especially, there is relatively stable snow accumulation in January every year. The brightness temperatures which are observed by the Advanced Microwave Scanning Radiometer 2 (AMSR2) on GCOM-W1 and FengYun3B Microwave Radiation Imager (FY3B-MWRI) in the same period in 2013 are selected as the study data in the research. The results of snow depth retrieval using AMSR2 standard algorithm and Jiang's FY operational algorithm are compared in the research. Moreover, to validate the accuracy of the two algorithms, the retrieval results are compared with the SD data observed at the national meteorological stations in Northeastern China. Furthermore, the retrieval SD is also compared with AMSR2 and FY standard SD products, respectively. The root mean square errors (RMSE) results using AMSR2 standard algorithms and FY operational algorithm are close in the forest surface, which are 6.33cm and 6.28cm, respectively. However, The FY operational algorithm shows a better result than the AMSR2 standard algorithms in the grassland and farmland surface. The RMSE results using FY operational algorithm in the grassland and farmland surface are 2.44cm and 6.13cm, respectively.
机译:积雪对自然环境和人类活动具有非常重要的影响。同时,提高被动微波雪深(SD)检索的估计精度是目前的热点。东北地区是一个典型的雪学习区,包括许多不同的土地覆盖类型,如森林,草原和农田。特别是,每年1月都有相对稳定的积雪积累。在GCOM-W1和FENGYUN3B微波辐射成像器(FY3B-MWRI)上的先进微波扫描辐射计2(AMSR2)观察的亮度温度被选中为2013年同一时期作为研究中的研究数据。使用AMSR2标准算法和江的FY操作算法进行了雪深度检索的结果。此外,为了验证两种算法的准确性,将检索结果与中国东北东北部国家气象站观察到的SD数据进行比较。此外,检索SD也分别与AMSR2和FY标准SD产品进行比较。使用AMSR2标准算法和FY运行算法的根均方误差(RMSE)结果分别位于林表面,分别为6.33厘米和6.28厘米。然而,FY操作算法显示出比草原和农田表面的AMSR2标准算法更好的结果。在草地和农田表面使用FY运营算法的RMSE结果分别为2.44厘米和6.13厘米。

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