Shortly after the launch of ALOS PALSAR L-band SAR by the Japan Space Exploration Agency (JAXA), a program to develop an Earth Science Data Record (ESDR) for inundated wetlands was funded by NASA. Using established methodologies, extensive multi-temporal L-band ALOS ScanSAR data acquired bi-monthly by the PALSAR instrument onboard ALOS were used to classify the inundation state for South America for delivery as a component of this Inundated Wetlands ESDR (IW-ESDR) and in collaboration with JAXA’s ALOS Kyoto and Carbon Initiative science programme. We describe these methodologies and the final classification of the inundation state, then compared this with results derived from dual-season data acquired by the JERS-1 L-band SAR mission in 19...
Remote sensing studies of vegetation cover and hydrologic dynamics in Amazonian wetlands have been m...
Differential synthetic aperture radar (SAR) interferometry (DInSAR) has been successfully used to es...
Abstract — It is well documented that 24cm wavelength JERS-1 and ALOS PALSAR L-band radar data are w...
Shortly after the launch of ALOS PALSAR L-band SAR by the Japan Space Exploration Agency (JAXA), a p...
UAVSAR, NASA's airborne Synthetic Aperture Radar (SAR), conducted an extended observational campaign...
The Amazon River floodplain is subject to large seasonal variations in water level and flood extent,...
River floodplains are the dominant wetland habitat in the Amazon river basin, providing important ha...
International audienceWetlands and surface waters are recognized to play important roles in climate,...
In this paper, we present a methodology to map inland water in tropical areas under dense vegetation...
Despite the growing number of remote-sensing products from satellite sensors, mapping of the combine...
The extent and dynamics of land surface inundation vary tremendously across the globe. Accurate spat...
Remote sensing studies of vegetation cover and hydrologic dynamics in Amazonian wetlands have been m...
Differential synthetic aperture radar (SAR) interferometry (DInSAR) has been successfully used to es...
Abstract — It is well documented that 24cm wavelength JERS-1 and ALOS PALSAR L-band radar data are w...
Shortly after the launch of ALOS PALSAR L-band SAR by the Japan Space Exploration Agency (JAXA), a p...
UAVSAR, NASA's airborne Synthetic Aperture Radar (SAR), conducted an extended observational campaign...
The Amazon River floodplain is subject to large seasonal variations in water level and flood extent,...
River floodplains are the dominant wetland habitat in the Amazon river basin, providing important ha...
International audienceWetlands and surface waters are recognized to play important roles in climate,...
In this paper, we present a methodology to map inland water in tropical areas under dense vegetation...
Despite the growing number of remote-sensing products from satellite sensors, mapping of the combine...
The extent and dynamics of land surface inundation vary tremendously across the globe. Accurate spat...
Remote sensing studies of vegetation cover and hydrologic dynamics in Amazonian wetlands have been m...
Differential synthetic aperture radar (SAR) interferometry (DInSAR) has been successfully used to es...
Abstract — It is well documented that 24cm wavelength JERS-1 and ALOS PALSAR L-band radar data are w...