The quantification of forest ecosystems is important for a variety of purposes, including the assessment of wildlife habitat, nutrient cycles, timber yield and fire propagation. This research assesses the estimation of forest structure, composition and deadwood variables from small-footprint airborne lidar data, both discrete return (DR) and full waveform (FW), acquired under leaf-on and leaf-off conditions. The field site, in the New Forest, UK, includes managed plantation and ancient, semi-natural, coniferous and deciduous woodland. Point clouds were rendered from the FW data through Gaussian decomposition. An area-based regression approach (using Akaike Information Criterion analysis) was employed, separately for the DR and FW data, to m...
Forest inventories comprise observations, models and sampling. Airborne LiDAR has established its ro...
The most common method for modeling forest attributes with airborne lidar, the area-based approach, ...
The Province of British Columbia is developing a suite of attributes to assess and monitor forest su...
The quantification of forest ecosystems is important for a variety of purposes, including the assess...
Spatial data on forest structure, composition, regeneration and deadwood are required for informed a...
Spatial data on forest structure, composition, regeneration and deadwood are required for informed a...
Light Detection And Ranging (LiDAR) in forested areas is used for constructing Digital Terrain Model...
Structure is a fundamental physical element of habitat, particularly in woodlands, and hence there h...
Conservation and monitoring of forest biodiversity requires reliable information about forest struct...
The goal of this review is to present leading examples of current methodologies for extracting fores...
Airborne light detection and ranging (LiDAR) has been used for forest biomass estimation for the pas...
Small-footprint, discrete return airborne laser scanning (ALS or lidar) data is increasingly being u...
AbstractA Canopy Height Profile (CHP) procedure presented in Harding et al. (2001) for large footpri...
A Canopy Height Profile (CHP) procedure presented in Harding et al. (2001) for large footprint LiDAR...
Accurate estimates of vegetation structure are important for a large number of applications includin...
Forest inventories comprise observations, models and sampling. Airborne LiDAR has established its ro...
The most common method for modeling forest attributes with airborne lidar, the area-based approach, ...
The Province of British Columbia is developing a suite of attributes to assess and monitor forest su...
The quantification of forest ecosystems is important for a variety of purposes, including the assess...
Spatial data on forest structure, composition, regeneration and deadwood are required for informed a...
Spatial data on forest structure, composition, regeneration and deadwood are required for informed a...
Light Detection And Ranging (LiDAR) in forested areas is used for constructing Digital Terrain Model...
Structure is a fundamental physical element of habitat, particularly in woodlands, and hence there h...
Conservation and monitoring of forest biodiversity requires reliable information about forest struct...
The goal of this review is to present leading examples of current methodologies for extracting fores...
Airborne light detection and ranging (LiDAR) has been used for forest biomass estimation for the pas...
Small-footprint, discrete return airborne laser scanning (ALS or lidar) data is increasingly being u...
AbstractA Canopy Height Profile (CHP) procedure presented in Harding et al. (2001) for large footpri...
A Canopy Height Profile (CHP) procedure presented in Harding et al. (2001) for large footprint LiDAR...
Accurate estimates of vegetation structure are important for a large number of applications includin...
Forest inventories comprise observations, models and sampling. Airborne LiDAR has established its ro...
The most common method for modeling forest attributes with airborne lidar, the area-based approach, ...
The Province of British Columbia is developing a suite of attributes to assess and monitor forest su...