Title :
A Sharpness-Dependent Filter for Recovering Sharp Features in Repaired 3D Mesh Models
Author :
Chen, Chun-Yen ; Cheng, Kuo-Young
Author_Institution :
Nat. Taiwan Univ., Taipei
Abstract :
This paper presents a sharpness-based method for hole-filling that can repair a 3D model such that its shape conforms to that of the original model. The method involves two processes: interpolation-based hole-filling, which produces an initial repaired model, and postprocessing, which adjusts the shape of the initial repaired model to conform to that of the original model. In the interpolation-based hole-filling process, a surface interpolation algorithm based on the radial basis function creates a smooth implicit surface that fills the hole. Then, a regularized marching tetrahedral algorithm is used to triangulate the implicit surface. Finally, a stitching and regulating strategy is applied to the surface patch and its neighboring boundary polygon meshes to produce an initial repaired mesh model, which is a regular mesh model suitable for postprocessing. During postprocessing, a sharpness-dependent filtering algorithm is applied to the initial repaired model. This is an iterative procedure whereby each iteration step adjusts the face normal associated with each meshed polygon to recover the sharp features hidden in the repaired model. The experiment results demonstrate that the method is effective in repairing incomplete 3D mesh models.
Keywords :
filtering theory; interpolation; mesh generation; solid modelling; surface fitting; 3D mesh model; initial repair model; interpolation-based hole-filling; iterative procedure; radial basis function; regularized marching tetrahedral algorithm; sharpness-dependent filtering algorithm; smooth implicit surface; surface interpolation algorithm; Computer graphics; Filtering algorithms; Filters; Helium; Interpolation; Noise shaping; Shape; Spline; Surface fitting; Surface reconstruction; Feature representation; Filtering; Geometric correction; Mesh repair; Surface fitting; Algorithms; Artificial Intelligence; Computer Graphics; Image Enhancement; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Pattern Recognition, Automated; Reproducibility of Results; Sensitivity and Specificity;
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
DOI :
10.1109/TVCG.2007.70625