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首页> 外文期刊>Journal of hydrometeorology >A Preliminary Study toward Consistent Soil Moisture from AMSR2
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A Preliminary Study toward Consistent Soil Moisture from AMSR2

机译:AMSR2对土壤水分保持一致的初步研究

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A preliminary study toward consistent soil moisture products from the Advanced Microwave Scanning Radiometer 2 (AMSR2) is presented. Its predecessor, the Advanced Microwave Scanning Radiometer for Earth Observing System (AMSR-E), has provided Earth scientists with a consistent and continuous global soil moisture dataset. A major challenge remains to achieve synergy between these soil moisture datasets, which is hampered by the lack of an overlapping observation period of the sensors. Here, observations of the multifrequency microwave radiometer on board the Tropical Rainfall Measuring Mission (TRMM) satellite were used to improve consistency between AMSR-E and AMSR2. Several scenarios to achieve synergy between the AMSR-E and AMSR2 soil moisture products were evaluated. The novel soil moisture retrievals from C-band observations, a frequency band that is lacking on board the TRMM satellite, are also presented. A global comparison of soil moisture retrievals against ERA-Interim soil moisture demonstrates the need for an intercalibration procedure. Several different scenarios based on filtering were tested, and the impact on the soil moisture retrievals was evaluated against two independent reference soil moisture datasets (reanalysis and in situ soil moisture) that cover both individual observation periods of the AMSR-E and AMSR2 sensors. Results show a high degree of consistency between both satellite products and two independent reference products for the soil moisture products retrieved from X-band observations. Care should be taken in the interpretation of the presented soil moisture products, and future research is needed to further align the AMSR2 and AMSR-E sensor calibrations.
机译:本文介绍了利用高级微波扫描辐射计2(AMSR2)进行的一致土壤水分产品的初步研究。它的前身是用于地球观测系统的高级微波扫描辐射计(AMSR-E),它为地球科学家提供了一致且连续的全球土壤湿度数据集。实现这些土壤水分数据集之间的协同仍然是一项主要挑战,但由于缺少重叠的传感器观察期而受到阻碍。在这里,使用热带雨量测量任务(TRMM)卫星上的多频微波辐射计进行观测,以提高AMSR-E和AMSR2之间的一致性。评价了实现AMSR-E和AMSR2土壤水分产品之间协同作用的几种方案。还介绍了从C波段观测获得的新颖的土壤水分,C波段观测是TRMM卫星上缺少的一个频带。将土壤水分取回量与ERA-Interim土壤水分进行全球比较表明,需要使用相互校准程序。测试了基于过滤的几种不同方案,并针对两个独立的参考土壤水分数据集(重新分析和原地土壤水分)评估了对土壤水分取回的影响,这些数据涵盖了AMSR-E和AMSR2传感器的各个观测期。结果表明,从X波段观测获得的土壤水分产品中,卫星产品和两种独立的参考产品之间具有高度一致性。在解释所介绍的土壤水分产品时应格外小心,并且需要进一步研究以进一步调整AMSR2和AMSR-E传感器的校准值。

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