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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >INTER-COMPARISONS AMONG PASSIVE MICROWAVE SEA ICE CONCENTRATION PRODUCTS FROM FY-3D MWRI AND AMSR2
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INTER-COMPARISONS AMONG PASSIVE MICROWAVE SEA ICE CONCENTRATION PRODUCTS FROM FY-3D MWRI AND AMSR2

机译:来自FY-3D MWRI和AMSR2的被动微波海冰浓度产品中的互相比较

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Passive microwave (PM) sensors on satellite can monitor sea ice distribution with their strengths of daylight- and weather-independent observations. Microwave Radiation Imager (MWRI) sensor aboard on the Chinese FengYun-3D (FY-3D) satellites was launched in 2017 and provides continuous observation for Arctic sea ice since then. In this study, sea ice concentration (SIC) product is derived from brightness temperature (TB) data of MWRI, based on an Arctic Radiation and Turbulence Interaction Study Sea Ice (ASI) dynamic tie points algorithm. Our product is inter-compared with a published MWRI SIC product by the Enhanced NASA Team (NT2) algorithm, and three Advanced Microwave Scanning Radiometer 2 (AMSR2) SIC products by the ASI, Bootstrap (BST) and NT2 algorithm. Results show that MWRI SIC are generally higher than AMSR2 SIC and the median of monthly SIC differences are larger in summer. Regional analysis indicates that the smaller differences between AMSR2 SIC and MWRI-ASI SIC occur in the higher SIC areas, and the biases are within ±5% in the Beaufort Sea, Chukchi Sea, East Siberian Sea, Canadian Archipelago Sea and Central Arctic Sea. There is the smallest SIC difference in the Central Arctic Sea with the biases of −0.77%, −0.60%, and 0.19% for AMSR2-ASI, AMSR2-BST and AMSR2-NT2, respectively. The trends of MWRI and AMSR2 sea ice extent and sea ice area are consistent with correlation coefficients all greater than 0.997. Besides, mean SIC, sea ice extent and sea ice area of MWRI-ASI are closer to those of AMSR2 than those of MWRI-NT2.
机译:卫星上的被动微波(PM)传感器可以监控海冰分布,其优势与日光和天气无关的观察结果。微波辐射成像仪(MWRI)传感器在中国丰云-3D(FY-3D)卫星在2017年推出,并从那时起,为北极海冰提供了连续的观察。在这项研究中,基于北极辐射和湍流相互作用研究海冰(ASI)动态扎带算法,Sea Ice浓度(SiC)产品来自MWRI的亮度温度(TB)数据。我们的产品与ASI,Bootstrap(BST)和NT2算法的增强NASA团队(NT2)算法和三个先进的微波扫描辐射计2(AMSR2)SIC产品相互作用。结果表明,MWRI SIC一般高于AMSR2 SIC,夏季每月SIC差异的中位数更大。区域分析表明,在较高的SIC区域中发生了AMSR2 SIC和MWRI-ASI SIC的较小差异,偏差在Beaufort海,Chukchi海,东西伯利亚海,加拿大群岛海和中央北极海中的±5%。中央北极海域的SiC差异最小,偏差分别为-0.77%,-0.60%,amsr2-asi,amsr2-bst和amsr2-nt2分别为0.19%。 MWRI和AMSR2海冰范围和海冰面积的趋势与相关系数一致,均大于0.997。此外,MWRI-ASI的平均SiC,海冰范围和海冰面积比MWRI-NT2更接近AMSR2的冰面积。

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