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首页> 外文期刊>International journal of applied earth observation and geoinformation >Large scale operational soil moisture mapping from passive MW radiometry: SMOS product evaluation in Europe & USA
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Large scale operational soil moisture mapping from passive MW radiometry: SMOS product evaluation in Europe & USA

机译:无源MW辐射测定的大规模运营土壤水分测定:欧洲欧式的SMOS产品评价

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摘要

Earth Observation (EO) allows deriving from a range of sensors, often globally, operational estimates of surface soil moisture (SSM) at range of spatiotemporal resolutions. Yet, an evaluation of the accuracy of those products in a variety of environmental conditions has been often limited. In this study, the accuracy of the SMOS SSM global operational product across 2 continents (USA, and Europe) and a range of land use/cover types is investigated. SMOS predictions were compared against near concurrent in-situ SSM measurements from the FLUXNET observational network. In total, 7 experimental sites were used to assess the accuracy of SMOS derived soil moisture for 2 complete years of observations (2010-2011). The accuracy of the SMOS SSM product is investigated in different seasons for the seasonal cycle as well as different continents and land use/cover types. Results showed a generally reasonable agreement between the SMOS product and the in-situ soil moisture measurements in the 0-5 cm soil moisture layer. Root Mean Square Error (RMSE) in most cases was close to 0.1 m(3 )m(-3) (minimum 0.067 m(3) m(-3)). With a few exceptions, Pearson's correlation coefficient was found up to approx. 55%. Grassland, shrublands and woody savanna land cover types attained a satisfactory agreement between satellite derived and in-situ measurements but needle-leaf forests had lower correlation. Better agreement was found for the grassland sites in both continents. Seasonally, summer and autumn underperformed spring and winter. Our study results provide supportive evidence of the potential value of this operational product for meso-scale studies in a range of practical applications, helping to address key challenges present nowadays linked to food and water security.
机译:地球观测(EO)允许从一系列传感器中获得,通常是全球性的,在时空分辨率范围内的表面土壤水分(SSM)的操作估计。然而,评估各种环境条件中这些产品的准确性经常有限。在这项研究中,调查了SMOS SSM全球运营产品的准确性,跨越2种大陆(美国和欧洲)和一系列土地使用/覆盖类型。将SMOS预测与Fluxnet观察网络的近同时靠近的原位SSM测量进行了比较。总共有7种实验位点来评估SMOS衍生的土壤水分的准确性2个完整多年的观察(2010-2011)。 SMOS SSM产品的准确性在不同季节调查了季节性周期以及不同的大陆和土地使用/覆盖类型。结果表明,SMOS产品与0-5厘米土壤湿度层中的原位土壤水分测量之间的普遍合理一致。大多数情况下,均均方误差(RMSE)接近0.1米(3)m(-3)(最小0.067米(3)m(-3))。有了一些例外,Pearson的相关系数被发现最多。 55%。草原,灌木丛和木质大草原覆盖类型达到了卫星衍生的和原位测量之间的满意协议,但针叶森林的相关性较低。在两大洲的草原地点找到了更好的协议。季节性,夏季和秋季表现不佳的春天和冬天。我们的研究结果提供了这一运营产品在一系列实际应用中的中学规模研究的潜在价值的支持证据,帮助解决了现在与食品和水安全相关的关键挑战。

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