Emission and backscattering signals of land surfaces at different frequencies have distinctive responses to soil and vegetation physical states. The use of multi-frequency combined active and passive microwave signals provides complementary information to better understand and interpret the observed signals in relation to surface states and the underlying physical processes. Such a capability also improves our ability to retrieve surface parameters and states such as soil moisture, freeze-thaw dynamics and vegetation biomass and vegetation water content (VWC) for ecosystem monitoring. We present here a prototype Community Land Active Passive Microwave Radiative Transfer Modelling platform (CLAP) for simulating both backscatter (σ0) and emis...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
In this paper, we implemented the in-situ observation of surface soil moisture (SSM), vegetation wat...
Owing to the temporal and spatial variability of the emissivity spectra, problems remain in the inte...
International audience[1] L band passive microwave remotely sensed data have great potential for pro...
International audience[1] L band passive microwave remotely sensed data have great potential for pro...
International audience[1] L band passive microwave remotely sensed data have great potential for pro...
Active and passive low-frequency microwave measurements from a number of space- and airborne instrum...
Radiation, heat and mass fluxes through the terrestrial surface are affected by the vegetation layer...
Active and passive microwave signatures respond differently to the land surface and provide compleme...
Land surface microwave emissivity affects remote sensing of both the atmosphere and the land surface...
Passive microwave remote sensing has shown potential for monitoring near surface soil moisture. This...
International audience—Ground-based multifrequency (L-band to W-band, 1.41–90 GHz) and multiangular ...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
In this paper, we implemented the in-situ observation of surface soil moisture (SSM), vegetation wat...
Owing to the temporal and spatial variability of the emissivity spectra, problems remain in the inte...
International audience[1] L band passive microwave remotely sensed data have great potential for pro...
International audience[1] L band passive microwave remotely sensed data have great potential for pro...
International audience[1] L band passive microwave remotely sensed data have great potential for pro...
Active and passive low-frequency microwave measurements from a number of space- and airborne instrum...
Radiation, heat and mass fluxes through the terrestrial surface are affected by the vegetation layer...
Active and passive microwave signatures respond differently to the land surface and provide compleme...
Land surface microwave emissivity affects remote sensing of both the atmosphere and the land surface...
Passive microwave remote sensing has shown potential for monitoring near surface soil moisture. This...
International audience—Ground-based multifrequency (L-band to W-band, 1.41–90 GHz) and multiangular ...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...
The NASA Soil Moisture Active Passive (SMAP) satellite mission aims to produce enhanced resolution s...