A Sharpness Dependent Approach to 3D Polygon Mesh Hole Filling
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Date
2005Author
Chen, Chun-Yen
Cheng, Kuo-Young
Liao, H.Y. Mark
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A sharpness dependent hole filling approach is proposed in this paper. The proposed method can fill the hole of a mesh-based model and recover its sharp feature located at the hole area. Interpolation based on radial basis function is applied to create a smooth implicit surface and this surface can approximate the shape of the missed data. Then, a regularized marching tetrahedral algorithm is adopted to triangulate the above implicit surface and to produce a polygonal hole patch. A repaired mesh model is obtained by stitching the hole patch and the hole boundary of the original model. Finally, a feature enhancement process is applied if there exists a sharp feature on the hole boundary of the original model. The introduction of a sharpness dependent filter enhances the sharp feature of a hole-filled model. Experiment results show that our approach can produce excellent reparation results especially for recovering sharp feature.
BibTeX
@inproceedings {10.2312:egs.20051012,
booktitle = {EG Short Presentations},
editor = {John Dingliana and Fabio Ganovelli},
title = {{A Sharpness Dependent Approach to 3D Polygon Mesh Hole Filling}},
author = {Chen, Chun-Yen and Cheng, Kuo-Young and Liao, H.Y. Mark},
year = {2005},
publisher = {The Eurographics Association},
DOI = {10.2312/egs.20051012}
}
booktitle = {EG Short Presentations},
editor = {John Dingliana and Fabio Ganovelli},
title = {{A Sharpness Dependent Approach to 3D Polygon Mesh Hole Filling}},
author = {Chen, Chun-Yen and Cheng, Kuo-Young and Liao, H.Y. Mark},
year = {2005},
publisher = {The Eurographics Association},
DOI = {10.2312/egs.20051012}
}