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首页> 外文期刊>Remote Sensing >The AQUI Soil Moisture Network for Satellite Microwave Remote Sensing Validation in South-Western France
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The AQUI Soil Moisture Network for Satellite Microwave Remote Sensing Validation in South-Western France

机译:法国西南部用于卫星微波遥感验证的AQUI土壤水分网络

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摘要

Global soil moisture (SM) products are currently available thanks to microwave remote sensing techniques. Validation of these satellite-based SM products over different vegetation and climate conditions is a crucial step. INRA (National Institute of Agricultural Research) has set up the AQUI SM and soil temperature in situ network (composed of three main sites Bouron, Bilos, and Hermitage), over a flat area of dense pine forests, in South-Western France (the Bordeaux–Aquitaine region) to validate the Soil Moisture and Ocean salinity (SMOS) satellite SM products. SMOS was launched in 2009 by the European Space Agency (ESA). The aims of this study are to present the AQUI network and to evaluate the SMOS SM product (in the new SMOS-IC version) along with other microwave SM products such as the active ASCAT (Advanced Scatterometer) and the ESA combined (passive and active) CCI (Climate Change Initiative) SM retrievals. A first comparison, using Pearson correlation, Bias, RMSE (Root Mean Square Error), and Un biased RMSE (ubRMSE) scores, between the 0–5 cm AQUI network and ASCAT, CCI, and SMOS SM products was conducted. In general all the three products were able to reproduce the annual cycle of the AQUI in situ observations. CCI and ASCAT had best and similar correlations (R~0.72) over the Bouron and Bilos sites. All had comparable correlations over the Hermitage sites with overall average values of 0.74, 0.68, and 0.69 for CCI, SMOS-IC, and ASCAT, respectively. Considering anomalies, correlation values decreased for all products with best ability to capture day to day variations obtained by ASCAT. CCI (followed by SMOS-IC) had the best ubRMSE values (mostly 0.04 m 3 /m 3 ) over most of the stations. Although the region is highly impacted by radio frequency interferences, SMOS-IC followed correctly the in situ SM dynamics. All the three remotely-sensed SM products (except SMOS-IC over some stations) overestimated the AQUI in situ SM observations. These results demonstrate that the AQUI network is likely to be well-suited for satellite microwave remote sensing evaluations/validations.
机译:借助微波遥感技术,目前可提供全球土壤湿度(SM)产品。在不同的植被和气候条件下验证这些基于卫星的SM产品是至关重要的一步。 INRA(国家农业科学研究所)在法国西南部(法国南部)的一片茂密松树林中建立了AQUI SM和土壤温度原位网络(由三个主要站点Bouron,Bilos和Hermitage组成)波尔多-阿基坦大区)以验证土壤水分和海洋盐度(SMOS)卫星SM产品。 SMOS由欧洲航天局(ESA)于2009年发射升空。这项研究的目的是介绍AQUI网络并评估SMOS SM产品(在新的SMOS-IC版本中)以及其他微波SM产品,例如有源ASCAT(高级散射仪)和ESA组合(无源和有源)。 )CCI(气候变化倡议)SM检索。使用0–5 cm AQUI网络与ASCAT,CCI和SMOS SM产品之间的皮尔森相关,偏差,均方根误差(RMSE)和均方根误差(ubRMSE)分数进行了首次比较。总的来说,所有这三种产品都能够再现AQUI的年度观测资料。 CCI和ASCAT在Bouron和Bilos站点上具有最佳和相似的相关性(R〜0.72)。所有这些在偏僻寺院站点上具有可比的相关性,CCI,SMOS-IC和ASCAT的总体平均值分别为0.74、0.68和0.69。考虑到异常,所有具有捕获ASCAT日常变化的最佳能力的产品的相关值均下降。在大多数站点中,CCI(紧随其后的是SMOS-IC)的ubRMSE值最高(大多<0.04 m 3 / m 3)。尽管该区域受到射频干扰的严重影响,但SMOS-IC正确地遵循了原位SM动力学。所有三种遥感SM产品(某些站点上的SMOS-IC除外)都高估了AQUI现场SM观测值。这些结果表明,AQUI网络很可能非常适合卫星微波遥感评估/验证。

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