In this work, Advanced SCATterometer (ASCAT) backscatter data are directly assimilated into the interactions between soil, biosphere, and atmosphere (ISBA) land surface model using Meteo-France's global Land Data Assimilation System (LDAS-Monde) tool in order to jointly analyse soil moisture and leaf area index (LAI). For the first time, observation operators based on neural networks (NNs) are trained with ISBA simulations and LAI observations from the PROBA-V satellite to predict the ASCAT backscatter signal. The trained NN-based observation operators are implemented in LDAS-Monde, which allows the sequential assimilation of backscatter observations. The impact of the assimilation is evaluated over southwestern France. The simulated and an...
International audienceVegetation optical depth (VOD), as a microwave-based vegetation index for vege...
The TU-Wien developed a soil moisture retrieval algorithm that uses the incidence angle dependence o...
Active radar backscatter (s) observations from the Advanced Scatterometer (ASCAT) and passive radiom...
In this work, Advanced SCATterometer (ASCAT) backscatter data are directly assimilated into the inte...
A Deep Neural Network (DNN) is used to estimate the Advanced Scatterometer (ASCAT) C-band microwave ...
International audienceThis paper investigates to what extent soil moisture and vegetation density in...
In this study, deep neural networks are employed to act as a surrogate model between the Meteo Franc...
International audienceLand surfaces are characterised by strong heterogeneities of soil texture, oro...
International audienceIn this study, a global land data assimilation system (LDAS-Monde) is applied ...
Observed by satellites for more than a decade, surface soil moisture (SSM) is an essential component...
International audienceVegetation optical depth (VOD), as a microwave-based vegetation index for vege...
The TU-Wien developed a soil moisture retrieval algorithm that uses the incidence angle dependence o...
Active radar backscatter (s) observations from the Advanced Scatterometer (ASCAT) and passive radiom...
In this work, Advanced SCATterometer (ASCAT) backscatter data are directly assimilated into the inte...
A Deep Neural Network (DNN) is used to estimate the Advanced Scatterometer (ASCAT) C-band microwave ...
International audienceThis paper investigates to what extent soil moisture and vegetation density in...
In this study, deep neural networks are employed to act as a surrogate model between the Meteo Franc...
International audienceLand surfaces are characterised by strong heterogeneities of soil texture, oro...
International audienceIn this study, a global land data assimilation system (LDAS-Monde) is applied ...
Observed by satellites for more than a decade, surface soil moisture (SSM) is an essential component...
International audienceVegetation optical depth (VOD), as a microwave-based vegetation index for vege...
The TU-Wien developed a soil moisture retrieval algorithm that uses the incidence angle dependence o...
Active radar backscatter (s) observations from the Advanced Scatterometer (ASCAT) and passive radiom...