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Multi-Scale Validation of SMAP Soil Moisture Products over Cold and Arid Regions in Northwestern China Using Distributed Ground Observation Data

机译:利用分布式地面观测数据对中国西北寒冷干旱地区SMAP土壤水分产品进行多尺度验证

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The Soil Moisture Active Passive (SMAP) mission was designed to provide global mapping of soil moisture (SM) on nested 3, 9, and 36 km earth grids measured by L-band passive and active microwave sensors. The validation of SMAP SM products is crucial for the application of the products and improvement of the retrieval algorithm. Since the SMAP SM products were released, much effort has been invested in the evaluation of the SMAP radiometer SM product (SMAP_P). However, there has been little validation of SMAP radar (SMAP_A) and active/passive combined (SMAP_AP) SM products. This paper presents an evaluation of SMAP_P, SMAP_A and SMAP_AP SM products by using distributed ground observations networks in different landscapes in the Heihe River Basin of northwestern China. The standard error metrics of SMAP products and relative error are applied to measure the products’ performances. The results show that the SMAP SM products exhibit consistent spatial-temporal variation with the ground measurements and typical precipitation events. Three products show various types of performance capability (e.g., active, passive and combined), surface coverage (e.g., bare, vegetated) and climatic region (e.g., cold, arid). Relatively, the SMAP_P shows the best performance, while the SMAP_A performs the worst. The best performances are observed over bare soils but with overestimation and the largest relative error, and unsatisfactory accuracies are observed over cold regions and woody vegetated surfaces with underestimation. The vegetation effect and the freezing-thawing cycle may be major factors that led to an unsatisfactory performance. Efforts on resolving the influence of these factors are expected to improve the accuracy and to promote the application of SMAP SM products over these regions. Overall, this evaluation provides an understanding of SMAP SM products over cold and arid regions, and suggestions for the further refinement of the SMAP SM retrieval algorithms.
机译:主动被动土壤水分(SMAP)任务旨在通过L波段被动和主动微波传感器对嵌套的3、9和36 km地球网格上的土壤水分(SM)进行全局映射。 SMAP SM产品的验证对于产品的应用和改进检索算法至关重要。自发布SMAP SM产品以来,已投入大量精力评估SMAP辐射计SM产品(SMAP_P)。但是,对SMAP雷达(SMAP_A)和主动/被动组合(SMAP_AP)SM产品的验证很少。本文利用分布在西北黑河地区不同景观的地面观测网络,对SMAP_P,SMAP_A和SMAP_AP SM产品进行了评估。 SMAP产品的标准误差量度和相对误差适用于测量产品的性能。结果表明,SMAP SM产品在地面测量和典型降水事件方面表现出一致的时空变化。三种产品显示出各种类型的性能(例如,主动,被动和组合),表面覆盖(例如,裸露,植被)和气候区域(例如,寒冷,干旱)。相对而言,SMAP_P表现出最好的性能,而SMAP_A表现最差。在裸露的土壤上观察到最佳性能,但高估且相对误差最大,而在寒冷地区和木质植被表面低估的情况下,观察到的精度不令人满意。植被效应和冻融循环可能是导致性能欠佳的主要因素。解决这些因素影响的努力有望提高准确性,并促进SMAP SM产品在这些地区的应用。总体而言,此评估提供了对寒冷和干旱地区的SMAP SM产品的理解,并为进一步完善SMAP SM检索算法提供了建议。

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