首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Application of Triple Collocation in Ground-Based Validation of Soil Moisture Active/Passive (SMAP) Level 2 Data Products
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Application of Triple Collocation in Ground-Based Validation of Soil Moisture Active/Passive (SMAP) Level 2 Data Products

机译:三重配置在土壤水分主动/被动(SMAP)2级数据产品地面验证中的应用

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The validation of the soil moisture retrievals from the recently launched National Aeronautics and Space Administration (NASA) Soil Moisture Active/Passive (SMAP) satellite is important prior to their full public release. Uncertainty in attempts to characterize footprint-scale surface-layer soil moisture using point-scale ground observations has generally limited past validation of remotely sensed soil moisture products to densely instrumented sites covering an area approximating the satellite ground footprint. However, by leveraging independent soil moisture information obtained from land surface modeling and/or alternative remote sensing products, triple collocation (TC) techniques offer a strategy for characterizing upscaling errors in sparser ground measurements and removing the impact of such error on the evaluation of remotely sensed soil moisture products. Here, we propose and validate a TC-based strategy designed to utilize existing sparse soil moisture networks (typically with a single sampling point per satellite footprint) to obtain an unbiased correlation validation metric for satellite surface soil moisture retrieval products. Application of this TC strategy at five SMAP core validation sites suggests that unbiased estimates of correlation between the satellite product and the true footprint average can be obtained - even in cases where ground observations provide only one single reference point within the footprint. An example of preliminary validation results from the application of this TC strategy to the SMAP Level 2 Soil Moisture Passive (beta release version) product is presented.
机译:在全面公开发布之前,对最近发射的美国国家航空航天局(NASA)的土壤水分主动/被动(SMAP)卫星中的土壤水分取回进行验证非常重要。使用点尺度地面观测来表征足迹尺度表层土壤水分的尝试的不确定性通常将过去对遥感土壤水分产物的验证仅限于覆盖接近卫星地面足迹的密集仪器站点。但是,通过利用从陆地表面建模和/或替代遥感产品获得的独立土壤水分信息,三重搭配(TC)技术提供了一种策略,用于表征稀疏地面测量中的放大误差并消除此类误差对远程评估的影响感测到的土壤水分产品。在这里,我们提出并验证了一个基于TC的策略,该策略旨在利用现有的稀疏土壤水分网络(通常每个卫星足迹只有一个采样点)来获取卫星表面土壤水分检索产品的无偏相关性验证指标。在5个SMAP核心验证站点上应用此TC策略表明,即使在地面观测仅在足迹内提供一个参考点的情况下,也可以获得卫星产品与真实足迹平均值之间相关性的无偏估计。给出了将这种TC策略应用于SMAP 2级土壤水分被动式(测试版)产品的初步验证结果的示例。

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