SMOS-IC data record of soil moisture and L-VOD: Historical development, applications and perspectives
FRAPPART, Frédéric
Laboratoire d'études en Géophysique et océanographie spatiales [LEGOS]
Interactions Sol Plante Atmosphère [UMR ISPA]
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Laboratoire d'études en Géophysique et océanographie spatiales [LEGOS]
Interactions Sol Plante Atmosphère [UMR ISPA]
FRAPPART, Frédéric
Laboratoire d'études en Géophysique et océanographie spatiales [LEGOS]
Interactions Sol Plante Atmosphère [UMR ISPA]
Laboratoire d'études en Géophysique et océanographie spatiales [LEGOS]
Interactions Sol Plante Atmosphère [UMR ISPA]
AL-YAARI, Amen
Milieux Environnementaux, Transferts et Interactions dans les hydrosystèmes et les Sols [METIS]
Milieux Environnementaux, Transferts et Interactions dans les hydrosystèmes et les Sols [METIS]
DE LANNOY, Gabrielle
NASA Goddard Space Flight Center [GSFC]
Technologie campus Gent - KU Leuven [KU Leuven]
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NASA Goddard Space Flight Center [GSFC]
Technologie campus Gent - KU Leuven [KU Leuven]
Langue
en
Article de revue
Ce document a été publié dans
Remote Sensing of Environment. 2021-03, vol. 254, p. 1-20
Elsevier
Résumé en anglais
Passive microwave remote sensing observations at L-band provide key and global information on surface soil moisture and vegetation water content, which are related to the Earth water and carbon cycles. Only two spaceborne ...Lire la suite >
Passive microwave remote sensing observations at L-band provide key and global information on surface soil moisture and vegetation water content, which are related to the Earth water and carbon cycles. Only two spaceborne L-band sensors are currently operating: SMOS, launched end of 2009 and thus providing now a 10-year global data set and SMAP, launched beginning of 2015. This study provides a state-of-the-art scientific overview of the SMOS-IC retrieval data set based on the SMOS L-band observations. This SMOS product aims at improved performance and independence of auxiliary data, key features for robust applications. The SMOS-IC product includes both a soil moisture (SM) and a L-band vegetation optical depth (L-VOD) data set which are currently at the basis of several studies evaluating the impact of climate and anthropogenic activities on aboveground carbon stocks. Since the release of the first version, the algorithm has been significantly changed in support to key applications, but no document is available to report these changes. This paper fills this gap by analyzing key science questions related to the product development, reviewing application results and presenting an extensive description of the last version of the product (version 2) considering changes in comparison to the previous version (V105). For the future it is planned to merge the SMOS and SMAP L-VOD data sets to ensure L-VOD data continuity in the event of failure of one of the space-borne SMOS or SMAP sensors.< Réduire
Mots clés en anglais
SMOS-IC
Vegetation optical depth
L-VOD
Soil moisture
Biomass
Vegetation phenology
Origine
Importé de halUnités de recherche