The Radar Vegetation Index (RVI) is a well-established microwave metric of vegetation cover. The index utilizes measured linear scattering intensities from co- and cross-polarization and is normalized to ideally range from 0 to 1, increasing with vegetation cover. At long wavelengths (L-band) microwave scattering does not only contain information coming from vegetation scattering, but also from soil scattering (moisture & roughness) and therefore the standard formulation of RVI needs to be revised. Using global level SMAP L-band radar data, we illustrate that RVI runs up to 1.2, due to the pre-factor in the standard formulation not being adjusted to the scattering mechanisms at these low frequencies. Improvements on the RVI are subse...
Several successful algorithms have been developed to estimate soil moisture of bare surfaces. We pre...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
peer reviewedL-band radiometer measurements were performed at the Selhausen remote sensing field lab...
International audienceThe Radar Vegetation Index (RVI) is a well-established microwave metric of veg...
The Radar Vegetation Index (RVI) is a well-established microwave metric of vegetation cover. The ind...
International audienceSurface soil moisture and the nature of the overlying vegetation both influenc...
Spaceborne L-band radars have the ability to penetrate vegetation canopies over forested areas, sugg...
Research is being conducted on microwave scattering from vegetation. The objective is to develop tec...
Soil moisture retrieval algorithms based on passive microwave remote sensing observations need to ac...
Potential users of radar imagery need a better fundamental understanding of the capabilities of rada...
A simple approach for correcting for the effect of vegetation in the estimation of the surface soil ...
Kim and van Zyl (2001) proposed a kind of radar vegetation index (RVI). RVI = 4*min(λ1, λ2, λ3) / (λ...
Monitoring global vegetation dynamics is of great importance for many environmental applications. Th...
Past research has comprehensively assessed the capabilities of satellite sensors operating at microw...
The main objective of this investigation was the characterization of soil moisture using imaging rad...
Several successful algorithms have been developed to estimate soil moisture of bare surfaces. We pre...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
peer reviewedL-band radiometer measurements were performed at the Selhausen remote sensing field lab...
International audienceThe Radar Vegetation Index (RVI) is a well-established microwave metric of veg...
The Radar Vegetation Index (RVI) is a well-established microwave metric of vegetation cover. The ind...
International audienceSurface soil moisture and the nature of the overlying vegetation both influenc...
Spaceborne L-band radars have the ability to penetrate vegetation canopies over forested areas, sugg...
Research is being conducted on microwave scattering from vegetation. The objective is to develop tec...
Soil moisture retrieval algorithms based on passive microwave remote sensing observations need to ac...
Potential users of radar imagery need a better fundamental understanding of the capabilities of rada...
A simple approach for correcting for the effect of vegetation in the estimation of the surface soil ...
Kim and van Zyl (2001) proposed a kind of radar vegetation index (RVI). RVI = 4*min(λ1, λ2, λ3) / (λ...
Monitoring global vegetation dynamics is of great importance for many environmental applications. Th...
Past research has comprehensively assessed the capabilities of satellite sensors operating at microw...
The main objective of this investigation was the characterization of soil moisture using imaging rad...
Several successful algorithms have been developed to estimate soil moisture of bare surfaces. We pre...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
peer reviewedL-band radiometer measurements were performed at the Selhausen remote sensing field lab...