DocumentCode
951149
Title
Generic Remeshing of 3D Triangular Meshes with Metric-Dependent Discrete Voronoi Diagrams
Author
Valette, Sébastien ; Chassery, Jean-Marc ; Prost, Rémy
Author_Institution
Univ. Claude Bernard Lyon I, Villeurbanne
Volume
14
Issue
2
fYear
2008
Firstpage
369
Lastpage
381
Abstract
In this paper, we propose a generic framework for 3D surface remeshing. Based on a metric-driven Discrete Voronoi Diagram construction, our output is an optimized 3D triangular mesh with a user-defined vertex budget. Our approach can deal with a wide range of applications, from high-quality mesh generation to shape approximation. By using appropriate metric constraints, the method generates isotropic or anisotropic elements. Based on point sampling, our algorithm combines the robustness and theoretical strength of Delaunay criteria with the efficiency of an entirely discrete geometry processing. Besides the general described framework, we show the experimental results using isotropic, quadric-enhanced isotropic, and anisotropic metrics, which prove the efficiency of our method on large meshes at a low computational cost.
Keywords
approximation theory; computational geometry; mesh generation; solid modelling; surface fitting; 3D surface remeshing; 3D triangular mesh; Delaunay criteria; anisotropic metrics; discrete geometry processing; metric-dependent discrete Voronoi diagram; point sampling; quadric-enhanced isotropic; shape approximation; Approximation of surfaces and contours; Global optimization; Hierarchy and geometric transformations;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2007.70430
Filename
4359499
Link To Document