Global soil moisture products are based on passive microwave sensors of brightness temperature at different frequencies, including L- and C-bands. Two airborne sensors used to develop and test retrieval algorithms for soil moisture estimation are the L-band Electronically Scanned Thinned Array Radiometer (ESTAR) and the C-band Polarimetric Scanning Radiometer (PSR). In this letter, we compare the statistical and multifractal properties of soil moisture and brightness temperature from ESTAR and PSR during the Southern Great Plains Experiment in 1999. We show that differences between products are minimized at a support scale close to the satellite resolution. Then, we compare the subfootprint variabilities of each product in eight coarse doma...
International audienceUsing a global simulation of L-band (1.4 GHz) brightness temperature (T(B)) fo...
Soil moisture plays a key role in the water, energy, and carbon exchanges at the interface between t...
The satellite based passive (radiometer) and active (radar) microwave sensors enhanced our ability t...
Global soil moisture products are based on passive microwave sensors of brightness temperature at di...
Soil moisture has a strong impact on climate, hydrology and agronomy at different space scales, from...
This study assesses two remotely sensed soil moisture products from the Advanced Microwave Scanning ...
In the past decade, a variety of algorithms have been introduced to downscale passive microwave soil...
Within the scope of the upcoming launch of a new water related satellite mission (SMOS) a global eva...
Soil moisture processes exhibit a strong variability in space and time due to the variability of the...
Characterizing soil moisture (theta) variability is important for inferring high-resolution informat...
Within the scope of the upcoming launch of a new water related satellite mission (SMOS) a global eva...
International audienceFor more than six years, the Soil Moisture and Ocean Salinity (SMOS) mission h...
The scanning low frequency microwave radiometer (SLFMR) was used to map surface soil moisture (0-5 c...
Recent advances in L-band passive microwave remote sensing provide an unprecedented opportunity to m...
The satellite based passive (radiometer) and active (radar) microwave sensors enhanced our ability t...
International audienceUsing a global simulation of L-band (1.4 GHz) brightness temperature (T(B)) fo...
Soil moisture plays a key role in the water, energy, and carbon exchanges at the interface between t...
The satellite based passive (radiometer) and active (radar) microwave sensors enhanced our ability t...
Global soil moisture products are based on passive microwave sensors of brightness temperature at di...
Soil moisture has a strong impact on climate, hydrology and agronomy at different space scales, from...
This study assesses two remotely sensed soil moisture products from the Advanced Microwave Scanning ...
In the past decade, a variety of algorithms have been introduced to downscale passive microwave soil...
Within the scope of the upcoming launch of a new water related satellite mission (SMOS) a global eva...
Soil moisture processes exhibit a strong variability in space and time due to the variability of the...
Characterizing soil moisture (theta) variability is important for inferring high-resolution informat...
Within the scope of the upcoming launch of a new water related satellite mission (SMOS) a global eva...
International audienceFor more than six years, the Soil Moisture and Ocean Salinity (SMOS) mission h...
The scanning low frequency microwave radiometer (SLFMR) was used to map surface soil moisture (0-5 c...
Recent advances in L-band passive microwave remote sensing provide an unprecedented opportunity to m...
The satellite based passive (radiometer) and active (radar) microwave sensors enhanced our ability t...
International audienceUsing a global simulation of L-band (1.4 GHz) brightness temperature (T(B)) fo...
Soil moisture plays a key role in the water, energy, and carbon exchanges at the interface between t...
The satellite based passive (radiometer) and active (radar) microwave sensors enhanced our ability t...