DocumentCode
19179
Title
Model-Based Analysis–Synthesis for Realistic Tree Reconstruction and Growth Simulation
Author
Iovan, Corina ; Cournede, Paul-Henry ; Guyard, Thomas ; Bayol, Benoit ; Boldo, Didier ; Cord, Matthieu
Author_Institution
INRIA Saclay - Ile-de-France (the French Inst. for Res. in Inf. & Commun. Sci. & Technol.), Orsay, France
Volume
52
Issue
2
fYear
2014
fDate
Feb. 2014
Firstpage
1438
Lastpage
1450
Abstract
Due to complexity, vegetation analysis and reconstruction of remote sensing data are challenging problems. Using architectural tree models combined with model inputs estimated from aerial image analysis, this paper presents an analysis-synthesis approach for urban vegetation detection, modeling, and reconstruction. Tree species, height, and crown size information are extracted by aerial image analysis. These variables serve for model inversion to retrieve plant age, climatic growth conditions, and competition with neighbors. Functional-structural individual-based tree models are used to reconstruct and visualize virtual trees and their time evolutions realistically in a 3-D viewer rendering the models with geographical coordinates in the reconstructed scene. Our main contributions are: 1) a novel approach for generating plant models in 3-D reconstructed scenes based on the analysis of the geometric properties of the data, and 2) a modeling workflow for the reconstruction and growth simulation of vegetation in urban or natural environments.
Keywords
geophysical image processing; geophysical techniques; geophysics computing; image reconstruction; remote sensing; solid modelling; vegetation; 3-D reconstructed scenes; aerial image analysis; architectural tree models; climatic growth conditions; functional-structural individual-based tree models; geographical coordinates; growth simulation; model-based analysis-synthesis; natural environment; realistic tree reconstruction; remote sensing data; urban environment; urban vegetation detection; urban vegetation modeling; urban vegetation reconstruction; vegetation analysis; vegetation growth simulation; virtual trees; Dynamic scene evolution; functional–structural tree growth model; image-based vegetation modeling; species classification; vegetation detection;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2013.2251467
Filename
6497585
Link To Document