Global Ecosystem Dynamics Investigation (GEDI) satellite mission is expanding the spatial bounds and temporal resolution of large-scale mapping applications. Integrating the recent GEDI data into Airborne Laser Scanning (ALS)-derived estimations represents a global opportunity to update and extend forest models based on area based approaches (ABA) considering temporal and spatial dynamics. This study evaluates the effect of combining ALS-based aboveground biomass (AGB) estimates with GEDI-derived models by using temporally coincident datasets. A gradient of forest ecosystems, distributed through 21,766 km2 in the province of Badajoz (Spain), with different species and structural complexity, was used to: (i) assess the accuracy of GEDI canop...
Consistent, large-scale operational monitoring of forest structure is essential for estimating fores...
International audienceThe GEDI LiDAR system was specifically designed to detect vegetation structure...
International audienceLiDAR technology has been widely used to characterize structural parameters of...
Global Ecosystem Dynamics Investigation (GEDI) satellite mission is expanding the spatialbounds and ...
Global Ecosystem Dynamics Investigation (GEDI) satellite mission is expanding the spatial bounds an...
Abstract Background The NASA’s Global Ecosystem Dynamics Investigation (GEDI) satellite mission aims...
Information about forest structures is becoming crucial to earth's global carbon cycle, fores...
The Global Ecosystem Dynamics Investigation (GEDI) is expected to revolutionize the quantification o...
International audienceForests are one of the key elements in ecological transition policies in Europ...
Forest aboveground biomass (AGB) estimation over large extents and high temporal resolution is cruci...
The Global Ecosystem Dynamics Investigation (GEDI) LiDAR provides new spaceborne vegetation canopy s...
Consistent, large-scale operational monitoring of forest structure is essential for estimating fores...
International audienceThe GEDI LiDAR system was specifically designed to detect vegetation structure...
International audienceLiDAR technology has been widely used to characterize structural parameters of...
Global Ecosystem Dynamics Investigation (GEDI) satellite mission is expanding the spatialbounds and ...
Global Ecosystem Dynamics Investigation (GEDI) satellite mission is expanding the spatial bounds an...
Abstract Background The NASA’s Global Ecosystem Dynamics Investigation (GEDI) satellite mission aims...
Information about forest structures is becoming crucial to earth's global carbon cycle, fores...
The Global Ecosystem Dynamics Investigation (GEDI) is expected to revolutionize the quantification o...
International audienceForests are one of the key elements in ecological transition policies in Europ...
Forest aboveground biomass (AGB) estimation over large extents and high temporal resolution is cruci...
The Global Ecosystem Dynamics Investigation (GEDI) LiDAR provides new spaceborne vegetation canopy s...
Consistent, large-scale operational monitoring of forest structure is essential for estimating fores...
International audienceThe GEDI LiDAR system was specifically designed to detect vegetation structure...
International audienceLiDAR technology has been widely used to characterize structural parameters of...