Precise tree inventory plays a critical role in sustainable forest planting, restoration, and management. LiDAR-based individual tree detection algorithms often focus on finding individual treetops to discern tree positions. However, deliquescent tree forms (broad, flattened crowns) in deciduous forests can make these algorithms ineffective. In this study, we propose a stepwise tree detection approach, by first identifying individual trees using horizontal point density and then analyzing their vertical structure profiles. We first project LiDAR data onto a 2D horizontal plane and apply mean shift clustering to generate candidate tree clusters. Next, we apply a series of structure analyses on the vertical phase, to overcome local variations...
Individual tree crowns may be delineated from airborne laser scanning (ALS) data by segmentation of ...
Characterizing and monitoring forests are of great scientific and managerial interests, such as unde...
Identifying individual trees and delineating their canopy structures from the forest point clouddata...
Precise tree inventory plays a critical role in sustainable forest planting, restoration, and manage...
Airborne LiDAR (Light Detection And Ranging) remote sensing for individual tree-level forest invento...
Sustainable forest management requires forest inventory information at the individual tree level. Li...
This paper describes a new method for detecting individual tree stems that was designed to perform w...
In this paper, single tree extraction was carried out using the first and last pulse airborne LIght ...
Airborne discrete return light detection and ranging (LiDAR) point clouds covering forested areas ca...
Traditional forest management relies on a small field sample and interpretation of aerial photograph...
The terrestrial light detection and ranging (LiDAR) technique has been recently used to provide 3D s...
Unmanned aerial vehicle-based LiDAR survey provides very-high-density point clouds, which involve ve...
Estimates of forest stocking density per hectare (NHa) are important in characterising ecological co...
Analysis of individual trees in forests is of great value for the monitoring and sustainable managem...
In the past, many algorithms have been applied for three-dimensional (3-D) single tree extraction us...
Individual tree crowns may be delineated from airborne laser scanning (ALS) data by segmentation of ...
Characterizing and monitoring forests are of great scientific and managerial interests, such as unde...
Identifying individual trees and delineating their canopy structures from the forest point clouddata...
Precise tree inventory plays a critical role in sustainable forest planting, restoration, and manage...
Airborne LiDAR (Light Detection And Ranging) remote sensing for individual tree-level forest invento...
Sustainable forest management requires forest inventory information at the individual tree level. Li...
This paper describes a new method for detecting individual tree stems that was designed to perform w...
In this paper, single tree extraction was carried out using the first and last pulse airborne LIght ...
Airborne discrete return light detection and ranging (LiDAR) point clouds covering forested areas ca...
Traditional forest management relies on a small field sample and interpretation of aerial photograph...
The terrestrial light detection and ranging (LiDAR) technique has been recently used to provide 3D s...
Unmanned aerial vehicle-based LiDAR survey provides very-high-density point clouds, which involve ve...
Estimates of forest stocking density per hectare (NHa) are important in characterising ecological co...
Analysis of individual trees in forests is of great value for the monitoring and sustainable managem...
In the past, many algorithms have been applied for three-dimensional (3-D) single tree extraction us...
Individual tree crowns may be delineated from airborne laser scanning (ALS) data by segmentation of ...
Characterizing and monitoring forests are of great scientific and managerial interests, such as unde...
Identifying individual trees and delineating their canopy structures from the forest point clouddata...