Title :
Isotropic surface remeshing
Author :
Alliez, Pierre ; de Verdire, E.C. ; Devillers, Olivier ; Isenburg, Martin
Author_Institution :
INRIA, France
Abstract :
This paper proposes a new method for isotropic remeshing of triangulated surface meshes. Given a triangulated surface mesh to be resampled and a user-specified density function defined over it, we first distribute the desired number of samples by generalizing error diffusion, commonly used in image halftoning, to work directly on mesh triangles and feature edges. We then use the resulting sampling as an initial configuration for building a weighted centroidal Voronoi tessellation in a conformal parameter space, where the specified density function is used for weighing. We finally create the mesh by lifting the corresponding constrained Delaunay triangulation from parameter space. A precise control over the sampling is obtained through a flexible design of the density function, the latter being possibly low-pass filtered to obtain a smoother gradation. We demonstrate the versatility of our approach through various remeshing examples.
Keywords :
computational geometry; mesh generation; solid modelling; surface fitting; conformal parameter space; constrained Delaunay triangulation; error diffusion generalization; feature edge; flexible design; image halftoning; isotropic surface remeshing; low-pass filtering; mesh resampling; mesh triangle; optimal cutting; parameterization; polygonal schema; smoother gradation; surface sampling; triangulated surface mesh; user-specified density function; weighted centroidal Voronoi tessellation; Computational geometry; Computational modeling; Computer graphics; Density functional theory; Geometrical optics; Laser modes; Sampling methods; Solid modeling; Surface fitting; Surface reconstruction;
Conference_Titel :
Shape Modeling International, 2003
Print_ISBN :
0-7695-1909-1
DOI :
10.1109/SMI.2003.1199601