Discontinuity-Aware Normal Integration for Generic Central Camera Models
Francesco Milano, Manuel López-Antequera, Naina Dhingra, Roland Siegwart, Robert Thiel
Abstract
Recovering a 3D surface from its surface normal map, a problem known as normal integration, is a key component for photometric shape reconstruction techniques such as shape-from-shading and photometric stereo. The vast majority of existing approaches for normal integration handle only implicitly the presence of depth discontinuities and are limited to orthographic or ideal pinhole cameras. In this paper, we propose a novel formulation that allows modeling discontinuities explicitly and handling generic central cameras. Our key idea is based on a local planarity assumption, that we model through constraints between surface normals and ray directions. Compared to existing methods, our approach more accurately approximates the relation between depth and surface normals, achieves state-of-the-art results on the standard normal integration benchmark, and is the first to directly handle generic central camera models.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Builds on4
- Scalable, Detailed and Mask-Free Universal Photometric StereoSatoshi IkehataCVPR 2023
- Discontinuity-preserving Normal Integration with Auxiliary EdgesHyomin Kim, Yucheol Jung, Seungyong LeeCVPR 2024
- Rethinking Inductive Biases for Surface Normal EstimationGwangbin Bae, Andrew J. DavisonCVPR 2024
- Normal Integration via Inverse Plane Fitting With Minimum Point-to-Plane DistanceXu Cao, Boxin Shi, Fumio Okura, Yasuyuki MatsushitaCVPR 2021
Related papers
- Surface Reconstruction with Unconnected Normal Maps: An Efficient Mesh-based ApproachMiaohui Wang, Wuyuan Xie, Maolin CuiACM MM 2020 · 2 citations
- Variational Graph-based Normal IntegrationLixiong Chen, Bohan Yu, Victor Adrian Prisacariu, Imari SatoCVPR 2026
- PMNI: Pose-free Multi-view Normal Integration for Reflective and Textureless Surface ReconstructionMingzhi Pei, Xu Cao, Xiangyi Wang, Heng Guo et al.CVPR 2025
- RNb-NeuS: Reflectance and Normal-Based Multi-View 3D ReconstructionBaptiste Brument, Robin Bruneau, Yvain Quéau, Jean Mélou et al.CVPR 2024
- Feature-Preserving Mesh Decimation for Normal IntegrationMoritz Heep, Sven Behnke, Eduard ZellCVPR 2025
