Tree-level information can be estimated based on light detection and ranging (LiDAR) point clouds. We propose to develop a quantitative structural model based on terrestrial laser scanning (TLS) point clouds to automatically and accurately estimate tree attributes and to detect real trees for the first time. This model is suitable for forest research where branches are involved in the calculation. First, the Adtree method was used to approximate the geometry of the tree stem and branches by fitting a series of cylinders. Trees were represented as a broad set of cylinders. Then, the end of the stem or all branches were closed. The tree model changed from a cylinder to a closed convex hull polyhedron, which was to reconstruct a 3D model of th...
We present the point cloud slicing (PCS) algorithm, to post process point cloud data (PCD) from terr...
Accurate measures of forest structural parameters are essential to forest inventory and growth model...
International audienceLiDAR (Light Detection and Ranging) technology has been increasingly implement...
Detailed forest inventory and mensuration of individual trees have drawn attention of research socie...
In recent times, airborne and terrestrial laser scanning have been utilized to collect point cloud d...
Classifying and modelling tree stem characteristics such as tree height and diameter is a major chal...
Individual tree structural parameters are vital for precision silviculture in planted forests. This ...
The use of 3D point cloud-based technology for quantifying standing wood and stand parameters can pl...
Light Detection and Ranging (LiDAR) is a spatial data capture technology capable of recording millio...
This paper presents a method for fitting cylinders into a point cloud, derived from a terrestrial la...
Living vegetation volume (LVV), one of the most difficult tree parameters to calculate, is among the...
Abundant and refined structural information under forest canopy can be obtained by using terrestrial...
Forest above-ground biomass (AGB) can be estimated based on light detection and ranging (LiDAR) poin...
Individual tree level inventory performed using high density multi-return airborne Light Detection a...
LiDAR is a promising tool for fast and accurate measurements of trees. There are several approaches ...
We present the point cloud slicing (PCS) algorithm, to post process point cloud data (PCD) from terr...
Accurate measures of forest structural parameters are essential to forest inventory and growth model...
International audienceLiDAR (Light Detection and Ranging) technology has been increasingly implement...
Detailed forest inventory and mensuration of individual trees have drawn attention of research socie...
In recent times, airborne and terrestrial laser scanning have been utilized to collect point cloud d...
Classifying and modelling tree stem characteristics such as tree height and diameter is a major chal...
Individual tree structural parameters are vital for precision silviculture in planted forests. This ...
The use of 3D point cloud-based technology for quantifying standing wood and stand parameters can pl...
Light Detection and Ranging (LiDAR) is a spatial data capture technology capable of recording millio...
This paper presents a method for fitting cylinders into a point cloud, derived from a terrestrial la...
Living vegetation volume (LVV), one of the most difficult tree parameters to calculate, is among the...
Abundant and refined structural information under forest canopy can be obtained by using terrestrial...
Forest above-ground biomass (AGB) can be estimated based on light detection and ranging (LiDAR) poin...
Individual tree level inventory performed using high density multi-return airborne Light Detection a...
LiDAR is a promising tool for fast and accurate measurements of trees. There are several approaches ...
We present the point cloud slicing (PCS) algorithm, to post process point cloud data (PCD) from terr...
Accurate measures of forest structural parameters are essential to forest inventory and growth model...
International audienceLiDAR (Light Detection and Ranging) technology has been increasingly implement...