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Assessment of the SMAP Passive Soil Moisture Product

机译:SMAP被动土壤水分产品的评估

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The National Aeronautics and Space Administration (NASA) Soil Moisture Active Passive (SMAP) satellite mission was launched on January 31, 2015. The observatory was developed to provide global mapping of high-resolution soil moisture and freeze-thaw state every two to three days using an L-band (active) radar and an L-band (passive) radiometer. After an irrecoverable hardware failure of the radar on July 7, 2015, the radiometer-only soil moisture product became the only operational soil moisture product for SMAP. The product provides soil moisture estimates posted on a 36 km Earth-fixed grid produced using brightness temperature observations from descending passes. Within months after the commissioning of the SMAP radiometer, the product was assessed to have attained preliminary (beta) science quality, and data were released to the public for evaluation in September 2015. The product is available from the NASA Distributed Active Archive Center at the National Snow and Ice Data Center. This paper provides a summary of the Level 2 Passive Soil Moisture Product (L2_SM_P) and its validation against in situ ground measurements collected from different data sources. Initial in situ comparisons conducted between March 31, 2015 and October 26, 2015, at a limited number of core validation sites (CVSs) and several hundred sparse network points, indicate that the V-pol Single Channel Algorithm (SCA-V) currently delivers the best performance among algorithms considered for L2_SM_P, based on several metrics. The accuracy of the soil moisture retrievals averaged over the CVSs was 0.038 m3/m3 unbiased root-mean-square difference (ubRMSD), which approaches the SMAP mission requirement of 0.040 m3/m3.
机译:美国国家航空航天局(NASA)的土壤水分主动无源(SMAP)卫星任务于2015年1月31日发射。该天文台的开发目的是每两到三天提供高分辨率土壤湿度和冻融状态的全球地图绘制使用L波段(有源)雷达和L波段(无源)辐射计。在2015年7月7日雷达发生不可恢复的硬件故障之后,仅辐射计的土壤水分产品成为SMAP唯一可操作的土壤水分产品。该产品提供了土壤湿度估算值,该估算值发布在一个36 km固定在地面上的网格上,该网格使用来自下降通道的亮度温度观测值生成。在SMAP辐射计投入使用后的几个月内,该产品被评估为具有初步(beta)科学质量,并于2015年9月向公众发布了数据以供评估。该产品可从位于以下位置的NASA分布式活动档案中心获取:国家冰雪数据中心。本文提供了2级被动土壤水分产品(L2_SM_P)的摘要,并针对从不同数据源收集的现场地面测量结果进行了验证。在2015年3月31日至2015年10月26日之间,在有限数量的核心验证站点(CVS)和数百个稀疏网络点上进行的初始原位比较表明,V-pol单通道算法(SCA-V)当前提供了基于几个指标,在考虑用于L2_SM_P的算法中具有最佳性能。 CVS上平均土壤水分取回的准确度为0.038 m3 / m3无偏方均方差(ubRMSD),接近SMAP任务要求0.040 m3 / m3。

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