LiDAR data has been successfully used to estimate forest parameters such as canopy heights and biomass. Major limitation of LiDAR systems (airborne and spaceborne) arises from their limited spatial coverage. In this study, we present a technique for canopy height mapping using airborne and spaceborne LiDAR data (from the Geoscience Laser Altimeter System (GLAS)). First, canopy heights extracted from both airborne and spaceborne LiDAR were extrapolated from available environmental data. The estimated canopy height maps using Random Forest (RF) regression from airborne or GLAS calibration datasets showed similar precisions (~6 m). To improve the precision of canopy height estimates, regression-kriging was used. Results indicated an improvemen...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
International audienceEstimating forest canopy height from large-footprint satellite LiDAR waveforms...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
International audienceLiDAR data has been successfully used to estimate forest parameters such as ca...
IGARSS 2015, Milan, ITA, 26-/07/2015 - 31/07/2015International audienceLiDAR remote sensing has been...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
LiDAR remote sensing has been shown to be a good technique for the estimation of forest parameters s...
LiDAR remote sensing has been shown to be a good technique for the estimation of forest parameters s...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
International audienceEstimating forest canopy height from large-footprint satellite LiDAR waveforms...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
International audienceLiDAR data has been successfully used to estimate forest parameters such as ca...
IGARSS 2015, Milan, ITA, 26-/07/2015 - 31/07/2015International audienceLiDAR remote sensing has been...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
LiDAR remote sensing has been shown to be a good technique for the estimation of forest parameters s...
LiDAR remote sensing has been shown to be a good technique for the estimation of forest parameters s...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
Estimating forest canopy height from large-footprint satellite LiDAR waveforms is challenging given ...
International audienceEstimating forest canopy height from large-footprint satellite LiDAR waveforms...