Tree heights are the principal variables for forest plantation inventory. The increasing availability of high-resolution three-dimensional (3D) point clouds derived from low-cost Unmanned Aerial Vehicle (UAV) and modern photogrammetry offers an opportunity to generate a Canopy Height Model (CHM) in the mountainous areas. In this paper, we assessed the capabilities of tree height estimation using UAV-based Structure-from-Motion (SfM) photogrammetry and Semi-Global Matching (SGM). The former is utilized to generate 3D geometry, while the latter is used to generate dense point clouds from UAV imagery. The two algorithms were coupled with a Radial Basis Function (RBF) neural network to acquire CHMs in mountainous areas. This study focused on th...
Individual tree height (ITH) is one of the most important vertical structure parameters of a forest....
Plantations of typical Mediterranean tree species, such as cork oak (Quercus suber L.), holm oak (Qu...
In this paper we examine the feasibility of data from unmanned aerial vehicle (UAV)-borne aerial ima...
The aim of this study was to develop an easily applicable, cost-efficient workflow for tree height e...
Tropical forests are a key component of the global carbon cycle and climate change mitigation. Field...
Tropical forests are a key component of the global carbon cycle and climate change mitigation. Field...
To reduce data acquisition cost, this study proposed a novel method of individual tree height estima...
The measurement of tree height has long been an important tree attribute for the purpose of calculat...
Plantation forests play a critical role in forest products and ecosystems. Unmanned aerial vehicle (...
The recent development of operational small unmanned aerial systems (UASs) opens the door for their ...
A low-cost but accurate remote-sensing-based forest-monitoring tool is necessary for regularly inven...
The use of Unmanned Aerial Systems (UAS) opens a new era for remote sensing and forest management, w...
This study provides insight into the assessment of canopy biophysical parameter retrieval using pass...
Assessing biophysical forest parameters such as Leaf Area Index (LAI) and canopy height is of vital ...
Methods for accurately measuring biophysical parameters are a key component for quantitative evaluat...
Individual tree height (ITH) is one of the most important vertical structure parameters of a forest....
Plantations of typical Mediterranean tree species, such as cork oak (Quercus suber L.), holm oak (Qu...
In this paper we examine the feasibility of data from unmanned aerial vehicle (UAV)-borne aerial ima...
The aim of this study was to develop an easily applicable, cost-efficient workflow for tree height e...
Tropical forests are a key component of the global carbon cycle and climate change mitigation. Field...
Tropical forests are a key component of the global carbon cycle and climate change mitigation. Field...
To reduce data acquisition cost, this study proposed a novel method of individual tree height estima...
The measurement of tree height has long been an important tree attribute for the purpose of calculat...
Plantation forests play a critical role in forest products and ecosystems. Unmanned aerial vehicle (...
The recent development of operational small unmanned aerial systems (UASs) opens the door for their ...
A low-cost but accurate remote-sensing-based forest-monitoring tool is necessary for regularly inven...
The use of Unmanned Aerial Systems (UAS) opens a new era for remote sensing and forest management, w...
This study provides insight into the assessment of canopy biophysical parameter retrieval using pass...
Assessing biophysical forest parameters such as Leaf Area Index (LAI) and canopy height is of vital ...
Methods for accurately measuring biophysical parameters are a key component for quantitative evaluat...
Individual tree height (ITH) is one of the most important vertical structure parameters of a forest....
Plantations of typical Mediterranean tree species, such as cork oak (Quercus suber L.), holm oak (Qu...
In this paper we examine the feasibility of data from unmanned aerial vehicle (UAV)-borne aerial ima...