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A Unified Surface Geometric Framework for Feature-Aware Denoising, Hole Filling and Context-Aware Completion
- Source :
- Journal of Mathematical Imaging and Vision, Journal of Mathematical Imaging and Vision, 2022
- Publication Year :
- 2022
- Publisher :
- Springer Science and Business Media LLC, 2022.
-
Abstract
- Technologies for 3D data acquisition and 3D printing have enormously developed in the past few years, and, consequently, the demand for 3D virtual twins of the original scanned objects has increased. In this context, feature-aware denoising, hole filling and context-aware completion are three essential (but far from trivial) tasks. In this work, they are integrated within a geometric framework and realized through a unified variational model aiming at recovering triangulated surfaces from scanned, damaged and possibly incomplete noisy observations. The underlying non-convex optimization problem incorporates two regularisation terms: a discrete approximation of the Willmore energy forcing local sphericity and suited for the recovery of rounded features, and an approximation of the $$\ell _0$$ ℓ 0 pseudo-norm penalty favouring sparsity in the normal variation. The proposed numerical method solving the model is parameterization-free, avoids expensive implicit volume-based computations and based on the efficient use of the Alternating Direction Method of Multipliers. Experiments show how the proposed framework can provide a robust and elegant solution suited for accurate restorations even in the presence of severe random noise and large damaged areas.
- Subjects :
- Willmore energy
Statistics and Probability
Surface inpainting
sparse non-convex optimization
Applied Mathematics
Context-aware mesh completion
[MATH.MATH-OC] Mathematics [math]/Optimization and Control [math.OC]
[MATH.MATH-NA] Mathematics [math]/Numerical Analysis [math.NA]
Condensed Matter Physics
Surface denoising
[INFO.INFO-TI] Computer Science [cs]/Image Processing [eess.IV]
Variational surface restoration
[INFO.INFO-TI]Computer Science [cs]/Image Processing [eess.IV]
Modeling and Simulation
[MATH.MATH-AP]Mathematics [math]/Analysis of PDEs [math.AP]
[MATH.MATH-OC]Mathematics [math]/Optimization and Control [math.OC]
Geometry and Topology
Computer Vision and Pattern Recognition
[MATH.MATH-AP] Mathematics [math]/Analysis of PDEs [math.AP]
[MATH.MATH-NA]Mathematics [math]/Numerical Analysis [math.NA]
Subjects
Details
- ISSN :
- 15737683 and 09249907
- Volume :
- 65
- Database :
- OpenAIRE
- Journal :
- Journal of Mathematical Imaging and Vision
- Accession number :
- edsair.doi.dedup.....482cd7893e89a27b9a9f92334582d590
- Full Text :
- https://doi.org/10.1007/s10851-022-01107-w