Neural Parametric Surfaces for Shape Modeling
Lei Yang, Yongqing Liang, Xin Li, Congyi Zhang, Guying Lin, Alla Sheffer, Scott Schaefer, John Keyser, Wenping Wang

TL;DR
This paper introduces Neural Parametric Surfaces, a novel neural representation for complex surface modeling that guarantees smoothness and offers greater flexibility than traditional methods, enabling high-precision shape reconstruction and shape space learning.
Contribution
It presents the first piecewise neural surface representation with guaranteed continuity and a learnable feature complex for flexible, high-precision surface modeling.
Findings
Achieves $G^0$ and empirically $G^1$ continuity between patches.
Outperforms traditional parametric surfaces in modeling capabilities.
Enables shape interpolation and completion from noisy data.
Abstract
The recent surge of utilizing deep neural networks for geometric processing and shape modeling has opened up exciting avenues. However, there is a conspicuous lack of research efforts on using powerful neural representations to extend the capabilities of parametric surfaces, which are the prevalent surface representations in product design, CAD/CAM, and computer animation. We present Neural Parametric Surfaces, the first piecewise neural surface representation that allows coarse patch layouts of arbitrary -sided surface patches to model complex surface geometries with high precision, offering greater flexibility over traditional parametric surfaces. By construction, this new surface representation guarantees continuity between adjacent patches and empirically achieves continuity, which cannot be attained by existing neural patch-based methods. The key ingredient of our…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsAdvanced Numerical Analysis Techniques · 3D Shape Modeling and Analysis · Computer Graphics and Visualization Techniques
