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Passive Microwave Remote Sensing of Soil Moisture Based on Dynamic Vegetation Scattering Properties for AMSR-E

机译:基于动态植被散射特性的AMSR-E被动微波遥感土壤水分

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Accurate mapping of long-term global soil moisture is of great importance to earth science studies and a variety of applications. An approach for deriving volumetric soil moisture using satellite passive microwave radiometry from the Advanced Microwave Scanning Radiometer for the Earth Observing System (AMSR-E) was developed in this study. Unlike the major AMSR-E retrieval algorithms that assume fixed scattering albedo values over the globe, the proposed algorithm adopts a weighted averaging strategy for soil moisture estimation based on a dynamic selection of albedo values that are empirically determined. The resulting soil moisture retrievals demonstrate more realistic global patterns and seasonal dynamics relative to the baseline University of Montana soil moisture product. Quantitative analysis of the new approach against soil moisture measurements over four study regions also indicates improvements over the baseline algorithm, with coefficients of determination between the retrievals and measurements increasing by approximately 16.9% and 41.5% and bias-corrected root-mean-square errors decreasing by about 25.0% and 38.2% for ascending and descending orbital data records, respectively. The resulting algorithm is readily applied to similar microwave sensors, including the Advanced Microwave Scanning Radiometer 2, and its retrieval strategy is also applicable to other passive microwave sensors, including lower frequency (L-band) observations from the National Aeronautics and Space Administration Soil Moisture Active Passive mission.
机译:准确绘制长期全球土壤湿度的图表对于地球科学研究和各种应用都非常重要。在这项研究中,开发了一种使用来自地球观测系统高级微波扫描辐射计(AMSR-E)的卫星被动微波辐射法获得土壤水分的方法。与主要的AMSR-E检索算法假定在全球范围内具有固定的散射反照率值不同,该算法采用基于经验确定的反照率值的动态选择的加权平均策略进行土壤水分估算。相对于基线的蒙大拿州大学土壤水分产品,所得的土壤水分反演结果显示出更现实的全球格局和季节动态。对四个研究区域的土壤水分测量新方法的定量分析也表明,与基线算法相比有所改进,取回和测量之间的确定系数分别增加了约16.9%和41.5%,并且偏差校正后的均方根误差减小了对于上升和下降轨道数据记录,分别下降了约25.0%和38.2%。所得算法很容易应用于类似的微波传感器,包括高级微波扫描辐射计2,其检索策略也适用于其他无源微波传感器,包括国家航空和航天局土壤水分的低频(L波段)观测主动被动任务。

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