Résumé
We propose a novel approach for the approximation and transfer of signals across 3D shapes. The proposed solution is based on taking pointwise polynomials of the Fourier-like Laplacian eigenbasis, which provides a compact and expressive representation for general signals defined on the surface. Key to our approach is the construction of a new orthonormal basis upon the set of these linearly dependent polynomials. We analyze the properties of this representation, and further provide a complete analysis of the involved parameters. Our technique results in accurate approximation and transfer of various families of signals between near-isometric and non-isometric shapes, even under poor initialization. Our experiments, showcased on a selection of downstream tasks such as filtering and detail transfer, show that our method is more robust to discretization artifacts, deformation and noise as compared to alternative approaches.
| langue originale | Anglais |
|---|---|
| Pages (de - à) | 435-447 |
| Nombre de pages | 13 |
| journal | Computer Graphics Forum |
| Volume | 40 |
| Numéro de publication | 2 |
| Les DOIs | |
| état | Publié - 1 mai 2021 |
Empreinte digitale
Examiner les sujets de recherche de « Orthogonalized Fourier Polynomials for Signal Approximation and Transfer ». Ensemble, ils forment une empreinte digitale unique.Contient cette citation
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