Forest canopy height is an important input variable to derive a set of essential parameters of forest stands, which is yet costly and time consuming when measured based on ground surveys. The satellite-based laser scanner data from ICESat-GLAS provide a 3D representation of gorund objects by measuring the distance from spacecraft to the objects on the earth surface. By means of these data, this study aims to estimate forest canopy height in a portion of mountainous Kheyroud experimental forests in north of Iran. An ICESat-GLAS dataset was analyzed. Several metrics including waveform extent, lead-edge extent and trail-edge extent were extracted from waveform data, and a terrain index was additionally calculated based on a digital elevation m...
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...
IGARSS 2015, Milan, ITA, 26-/07/2015 - 31/07/2015International audienceSince Lidar technology provid...
The importance of measuring forest biophysical properties for ecosystem health monitoring and forest...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceMe...
The Geoscience Laser Altimeter System (GLAS) aboard Ice, Cloud and land Elevation Satellite (ICESat)...
Forest canopy height is an important input for ecosystem and highly correlated with aboveground biom...
This study explores ICESat/GLAS waveform data in Thuringian Forest, a low mountain range located in ...
International audienceThe Geoscience Laser Altimeter System (GLAS) has provided a useful dataset for...
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...
IGARSS 2015, Milan, ITA, 26-/07/2015 - 31/07/2015International audienceSince Lidar technology provid...
The importance of measuring forest biophysical properties for ecosystem health monitoring and forest...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceMe...
The Geoscience Laser Altimeter System (GLAS) aboard Ice, Cloud and land Elevation Satellite (ICESat)...
Forest canopy height is an important input for ecosystem and highly correlated with aboveground biom...
This study explores ICESat/GLAS waveform data in Thuringian Forest, a low mountain range located in ...
International audienceThe Geoscience Laser Altimeter System (GLAS) has provided a useful dataset for...
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...