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Scalable Surface Reconstruction with Delaunay-Graph Neural Networks (2107.06130v3)

Published 13 Jul 2021 in cs.CV and cs.CG

Abstract: We introduce a novel learning-based, visibility-aware, surface reconstruction method for large-scale, defect-laden point clouds. Our approach can cope with the scale and variety of point cloud defects encountered in real-life Multi-View Stereo (MVS) acquisitions. Our method relies on a 3D Delaunay tetrahedralization whose cells are classified as inside or outside the surface by a graph neural network and an energy model solvable with a graph cut. Our model, making use of both local geometric attributes and line-of-sight visibility information, is able to learn a visibility model from a small amount of synthetic training data and generalizes to real-life acquisitions. Combining the efficiency of deep learning methods and the scalability of energy based models, our approach outperforms both learning and non learning-based reconstruction algorithms on two publicly available reconstruction benchmarks. Our code and data is available at https://github.com/raphaelsulzer/dgnn.

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Authors (4)
  1. Raphael Sulzer (6 papers)
  2. Loic Landrieu (35 papers)
  3. Renaud Marlet (43 papers)
  4. Bruno Vallet (11 papers)
Citations (9)
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