NeurCross: A Neural Approach to Computing Cross Fields for Quad Mesh Generation
Qiujie Dong, Huibiao Wen, Rui Xu, Shuangmin Chen, Jiaran Zhou, Shiqing Xin, Changhe Tu, Taku Komura, Wenping Wang

TL;DR
NeurCross introduces a neural framework that jointly optimizes a cross field and a neural SDF to improve quad mesh generation by better aligning with surface features and curvature directions, enhancing robustness and quality.
Contribution
The paper presents a novel joint optimization method for cross fields and neural SDFs, improving quad mesh alignment and robustness over existing approaches.
Findings
Enhanced alignment of cross fields with principal curvature directions.
Improved robustness of quad meshes against noise and geometric variations.
Effective integration of neural SDFs for surface approximation and feature preservation.
Abstract
Quadrilateral mesh generation plays a crucial role in numerical simulations within Computer-Aided Design and Engineering (CAD/E). Producing high-quality quadrangulation typically requires satisfying four key criteria. First, the quadrilateral mesh should closely align with principal curvature directions. Second, singular points should be strategically placed and effectively minimized. Third, the mesh should accurately conform to sharp feature edges. Lastly, quadrangulation results should exhibit robustness against noise and minor geometric variations. Existing methods generally involve first computing a regular cross field to represent quad element orientations across the surface, followed by extracting a quadrilateral mesh aligned closely with this cross field. A primary challenge with this approach is balancing the smoothness of the cross field with its alignment to pre-computed…
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Taxonomy
TopicsImage Processing and 3D Reconstruction
MethodsSparse Evolutionary Training · ALIGN · Balanced Selection
