DocumentCode
1549691
Title
Computational-Geometry-Based Retrieval of Effective Leaf Area Index Using Terrestrial Laser Scanning
Author
Zheng, Guang ; Moskal, L. Monika
Author_Institution
Int. Inst. for Earth Syst. Sci., Nanjing Univ., Nanjing, China
Volume
50
Issue
10
fYear
2012
Firstpage
3958
Lastpage
3969
Abstract
Quantifying the 3-D forest canopy structure and leaf area index of an individual tree or a forest stand is challenging. The canopy structural information implicitly contained within point cloud data (PCD) generated from terrestrial laser scanning (TLS) makes it possible to characterize directly the spatial distribution of foliage elements. In this paper, a new voxel-based method titled “point cloud slicing” is presented to retrieve the biophysical characteristics of the forest canopy including extinction coefficient, gap fraction, overlapping effect, and effective leaf area (ELA) from PCD. These extractions were performed not only from the whole canopy but also from layers of the canopy to depict the distribution patterns of foliage elements within the canopy. The results showed that the TLS-based ELA estimation method could explain 88.7% (rmse = 0.007, p <; 0.001, and n = 30) variation of the destructive-sample-based leaf area measurement results. It was found that the sampling resolution was a key parameter in defining the dimension of a single voxel. Furthermore, the TLS-based method can also serve as a calibration tool for airborne laser scanning application with ground sampling.
Keywords
forestry; geophysical image processing; image retrieval; remote sensing by laser beam; vegetation mapping; 3-D forest canopy structure; TLS-based ELA estimation; airborne laser scanning; biophysical characteristics; canopy structural information; computational-geometry-based retrieval method; destructive-sample-based leaf area measurement; effective leaf area index; extinction coefficient; foliage element distribution pattern; foliage element spatial distribution; ground sampling method; overlapping effect; point cloud data; sampling resolution; terrestrial laser scanning; voxel-based method; Educational institutions; Indexes; Laser beams; Laser radar; Lasers; Solar radiation; Vegetation; Canopy structure; extinction coefficient; gap fraction; leaf area index (LAI); light detection and ranging (LiDAR); terrestrial laser scanning (TLS); voxelization;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2012.2187907
Filename
6227351
Link To Document