Synthetic Aperture Radar (SAR), as an active sensor transmitting long wavelengths, has the advantages of working day and night and without rain or cloud disturbance. It is further able to sense the geometric structure of forests more than passive optical sensors, making it a valuable tool for mapping forest Above Ground Biomass (AGB). This paper studies the ability of the single- and multi-temporal C-band Sentinel-1 and polarimetric L-band PALSAR-2 data to estimate live AGB based on ground truth data collected in New England, USA in 2017. Comparisons of results using the Simple Water Cloud Model (SWCM) on both VH and VV polarizations show that C-band reaches saturation much faster than the L-band due to its limited forest canopy penetration...
The aim of this study is to evaluate the potential of multifrequency and Full-polarimetric Synthetic...
Synthetic Aperture Radar (SAR) backscatter measurements are sensitive to forest aboveground biomass ...
At present, the greatest source of uncertainty in the global carbon cycle is in the terrestrial ecos...
Synthetic Aperture Radar (SAR), as an active sensor transmitting long wavelengths, has the advantage...
Space borne synthetic aperture radar (SAR) data have become one of the primary sources for abovegrou...
Many studies have been conducted in the estimation of forest above ground biomass (AGB) using featur...
Abstract. The capability of L-band radar backscatter to penetrate through the forest canopy is usefu...
Physics-based algorithms estimating large-scale forest above-ground biomass (AGB) from synthetic ape...
Biomass estimation performance using polarimetric interferometric synthetic aperture radar (PolInSAR...
Currently, one of the most uncertain factors in the global carbon cycle models lies in the terrestri...
The objective of this study is to develop models based on both optical and L-band Synthetic Aperture...
A study was conducted to evaluate using synthetic aperture radar (SAR) for estimating aboveground bi...
Estimation of forest aboveground biomass (AGB) has become one of the main challenges of remote sensi...
International audienceTo understand and quantify the role of forests on carbon cycle and its impact ...
The recently available space-borne SAR sensor, PALSAR, is more promising than its predecessor JERS-1...
The aim of this study is to evaluate the potential of multifrequency and Full-polarimetric Synthetic...
Synthetic Aperture Radar (SAR) backscatter measurements are sensitive to forest aboveground biomass ...
At present, the greatest source of uncertainty in the global carbon cycle is in the terrestrial ecos...
Synthetic Aperture Radar (SAR), as an active sensor transmitting long wavelengths, has the advantage...
Space borne synthetic aperture radar (SAR) data have become one of the primary sources for abovegrou...
Many studies have been conducted in the estimation of forest above ground biomass (AGB) using featur...
Abstract. The capability of L-band radar backscatter to penetrate through the forest canopy is usefu...
Physics-based algorithms estimating large-scale forest above-ground biomass (AGB) from synthetic ape...
Biomass estimation performance using polarimetric interferometric synthetic aperture radar (PolInSAR...
Currently, one of the most uncertain factors in the global carbon cycle models lies in the terrestri...
The objective of this study is to develop models based on both optical and L-band Synthetic Aperture...
A study was conducted to evaluate using synthetic aperture radar (SAR) for estimating aboveground bi...
Estimation of forest aboveground biomass (AGB) has become one of the main challenges of remote sensi...
International audienceTo understand and quantify the role of forests on carbon cycle and its impact ...
The recently available space-borne SAR sensor, PALSAR, is more promising than its predecessor JERS-1...
The aim of this study is to evaluate the potential of multifrequency and Full-polarimetric Synthetic...
Synthetic Aperture Radar (SAR) backscatter measurements are sensitive to forest aboveground biomass ...
At present, the greatest source of uncertainty in the global carbon cycle is in the terrestrial ecos...