A new processing technique, i.e., ground cancellation, which removes the ground signal from a pair of interferometric synthetic aperture radar (SAR) images, is used to emphasize the response from above-ground targets. This technique is of particular interest when studying forest canopies using low-frequency signals able to reach the underlying ground, in which case the portion of the signal coming from the ground interferes with the recovery of information about the vegetation. We demonstrate that the power in ground-canceled P-band HV SAR data gives significantly higher correlations with above-ground biomass (AGB) than the interferometric images considered separately. In addition, a significant increase in the sensitivity of backscatter to...
P-band synthetic aperture radar (SAR) is sensitive to above-ground biomass (AGB) but retrieval accur...
BIOMASS is ESA’s seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will be...
BIOMASS is ESA's seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will be...
A new processing technique, i.e., ground cancellation, which removes the ground signal from a pair o...
A new processing technique, i.e., ground cancellation, which removes the ground signal from a pair o...
The effectiveness of SAR tomography in estimating forest Above Ground Biomass (AGB) has been repeate...
This paper introduces the CASINO (CAnopy backscatter estimation, Subsampling, and Inhibited Nonlinea...
International audience3-D imaging using SAR tomography is a well-recognized technique for the charac...
Accurate estimates of forest aboveground biomass (AGB) after anthropogenic disturbance could reduce ...
Estimation of forest biomass with synthetic aperture radar (SAR) and interferometric SAR (InSAR) obs...
Synthetic aperture radar (SAR) is a technology to generate high-resolution radar images for ground s...
Above-ground woody biomass ii nn important parameter for describing the function and productivity of...
This work makes an attempt to explain the origin, features and potential applications of the elevati...
P-band synthetic aperture radar (SAR) is sensitive to above-ground biomass (AGB) but retrieval accur...
BIOMASS is ESA’s seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will be...
BIOMASS is ESA's seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will be...
A new processing technique, i.e., ground cancellation, which removes the ground signal from a pair o...
A new processing technique, i.e., ground cancellation, which removes the ground signal from a pair o...
The effectiveness of SAR tomography in estimating forest Above Ground Biomass (AGB) has been repeate...
This paper introduces the CASINO (CAnopy backscatter estimation, Subsampling, and Inhibited Nonlinea...
International audience3-D imaging using SAR tomography is a well-recognized technique for the charac...
Accurate estimates of forest aboveground biomass (AGB) after anthropogenic disturbance could reduce ...
Estimation of forest biomass with synthetic aperture radar (SAR) and interferometric SAR (InSAR) obs...
Synthetic aperture radar (SAR) is a technology to generate high-resolution radar images for ground s...
Above-ground woody biomass ii nn important parameter for describing the function and productivity of...
This work makes an attempt to explain the origin, features and potential applications of the elevati...
P-band synthetic aperture radar (SAR) is sensitive to above-ground biomass (AGB) but retrieval accur...
BIOMASS is ESA’s seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will be...
BIOMASS is ESA's seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will be...