Waveform broadening effects of large-footprint lidar caused by terrain slopes are still a great challenge limiting the estimation accuracy of forest aboveground biomass (AGB) over mountainous areas. Slope-adaptive metrics of waveforms were proposed in our previous studies. However, its validation was limited by the unavailability of enough reference data. This study made full validation of slope-adaptive metrics using data acquired by the Global Ecosystem Dynamics Investigation (GEDI) mission, meanwhile exploring GEDI waveforms on estimations of forest AGB. Three types of waveform metrics were employed, including slope-adaptive metrics (RHT), typical height metrics relative to ground peaks (RH), and waveform parameters (WP). In addition to ...
International audienceLiDAR technology has been widely used to characterize structural parameters of...
Accurate measurements of terrain elevation are crucial for many ecological applications. In this stu...
The full waveform GEDI lidar mission will map forest height and biomass at 1 km resolution globally ...
International audienceThe Global Ecosystem Dynamics Investigation LiDAR (GEDI) is a new full wavefor...
The Global Ecosystem Dynamics Investigation LiDAR (GEDI) is a new full waveform (FW) based LiDAR sys...
Forest canopy height is an important biophysical variable for quantifying carbon storage in terrestr...
NASA’s GEDI instrument is a full-waveform lidar, installed on the International Space Station since ...
NASA's Global Ecosystem Dynamics Investigation (GEDI) is a latest large-footprint full-waveform spac...
Abstract. Active remote sensing systems orbiting the Earth are only a small portion of the current c...
NASA's Global Ecosystem Dynamics Investigation (GEDI) is collecting spaceborne full waveform lidar d...
peer reviewedNASA's Global Ecosystem Dynamics Investigation (GEDI) is collecting spaceborne full wav...
International audienceLiDAR technology has been widely used to characterize structural parameters of...
Accurate measurements of terrain elevation are crucial for many ecological applications. In this stu...
The full waveform GEDI lidar mission will map forest height and biomass at 1 km resolution globally ...
International audienceThe Global Ecosystem Dynamics Investigation LiDAR (GEDI) is a new full wavefor...
The Global Ecosystem Dynamics Investigation LiDAR (GEDI) is a new full waveform (FW) based LiDAR sys...
Forest canopy height is an important biophysical variable for quantifying carbon storage in terrestr...
NASA’s GEDI instrument is a full-waveform lidar, installed on the International Space Station since ...
NASA's Global Ecosystem Dynamics Investigation (GEDI) is a latest large-footprint full-waveform spac...
Abstract. Active remote sensing systems orbiting the Earth are only a small portion of the current c...
NASA's Global Ecosystem Dynamics Investigation (GEDI) is collecting spaceborne full waveform lidar d...
peer reviewedNASA's Global Ecosystem Dynamics Investigation (GEDI) is collecting spaceborne full wav...
International audienceLiDAR technology has been widely used to characterize structural parameters of...
Accurate measurements of terrain elevation are crucial for many ecological applications. In this stu...
The full waveform GEDI lidar mission will map forest height and biomass at 1 km resolution globally ...