Soil moisture retrieval algorithms based on passive microwave remote sensing observations need to account for vegetation attenuation and emission, which is generally parameterized as vegetation optical depth (VOD). This multisensor study tests a new method to retrieve VOD from cross-polarized radar backscattering coefficients. Three years of Aquarius/SAC-D data were used to establish a relationship between the cross-polarized backscattering coefficient σHV and VOD derived from a multitemporal passive dual-channel algorithm (VODMT). The dependence of the correspondence is analyzed for different land use classes. There are no systematic differences in the slope for woody versus nonwoody vegetation, resulting in a strong correlation (80% expla...
A simple approach for correcting for the effect of vegetation in the estimation of the surface soil ...
In microwave remote sensing of the Earth's surface, the satellite signal holds information on both s...
Crop monitoring is of great importance for e.g., yield prediction and increasing water use efficienc...
Soil moisture retrieval algorithms based on passive microwave remote sensing observations need to ac...
Passive microwave measurements have the potential to estimate vegetation optical depth (VOD), an ind...
Vegetation products based on microwave remote sensing observations, such as Vegetation Optical Depth...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
Soil moisture (SM) and vegetation optical depth (VOD) are essential variables in the terrestrial eco...
The radiative transfer scheme implemented for the retrieval of soil moisture from passive microwaves...
© 2021 The Author(s) Due to the success of the SMOS (Soil Moisture and Ocean Salinity) and SMAP (Soi...
International audiencePassive microwave remote sensing of soil moisture is an underdetermined proble...
The presence of surface water on the canopy affects radar backscatter. However, its influence on the...
Active microwave measurements have the potential to estimate vegetation optical depth (VOD), an indi...
Monitoring global vegetation dynamics is of great importance for many environmental applications. Th...
Active microwave measurements have the potential to estimate vegetation optical depth (VOD), an indi...
A simple approach for correcting for the effect of vegetation in the estimation of the surface soil ...
In microwave remote sensing of the Earth's surface, the satellite signal holds information on both s...
Crop monitoring is of great importance for e.g., yield prediction and increasing water use efficienc...
Soil moisture retrieval algorithms based on passive microwave remote sensing observations need to ac...
Passive microwave measurements have the potential to estimate vegetation optical depth (VOD), an ind...
Vegetation products based on microwave remote sensing observations, such as Vegetation Optical Depth...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
Soil moisture (SM) and vegetation optical depth (VOD) are essential variables in the terrestrial eco...
The radiative transfer scheme implemented for the retrieval of soil moisture from passive microwaves...
© 2021 The Author(s) Due to the success of the SMOS (Soil Moisture and Ocean Salinity) and SMAP (Soi...
International audiencePassive microwave remote sensing of soil moisture is an underdetermined proble...
The presence of surface water on the canopy affects radar backscatter. However, its influence on the...
Active microwave measurements have the potential to estimate vegetation optical depth (VOD), an indi...
Monitoring global vegetation dynamics is of great importance for many environmental applications. Th...
Active microwave measurements have the potential to estimate vegetation optical depth (VOD), an indi...
A simple approach for correcting for the effect of vegetation in the estimation of the surface soil ...
In microwave remote sensing of the Earth's surface, the satellite signal holds information on both s...
Crop monitoring is of great importance for e.g., yield prediction and increasing water use efficienc...