Sparse Multi-Path Corrections in Fringe Projection Profilometry
Yu Zhang, Daniel L. Lau, David Wipf
Abstract
Three-dimensional scanning by means of structured light illumination is an active imaging technique involving projecting and capturing a series of striped patterns and then using the observed warping of stripes to reconstruct the target object's surface through triangulating each pixel in the camera to a unique projector coordinate corresponding to a particular feature in the projected patterns. The undesirable phenomenon of multi-path occurs when a camera pixel simultaneously sees features from multiple projector coordinates. Bimodal multi-path is a particularly common situation found along step edges, where the camera pixel sees both a foreground and background surface. Generalized from bimodal multi-path, this paper examines the phenomenon of sparse or N -modal multi-path as a more general case, where the camera pixel sees no fewer than two reflective surfaces, resulting in decoding errors. Using fringe projection profilometry, our proposed solution is to treat each camera pixel as an underdetermined linear system of equations and to find the sparsest (least number of paths) solution by taking an application-specific Bayesian learning approach. We validate this algorithm with both simulations and a number of challenging real-world scenarios, demonstrating that it outperforms state-of-the-art techniques.
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.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 37d95b2d-009a-40cf-a18d-4f1a2646b5d3Cited by top-tier papers2
- 3D Measurement of Complex Textured Objects Based on Bidirectional Fringe ProjectionYuchong Chen, Jian Yu, Shaoyan Gai, Zeyu Cai et al.AAAI 2025 · 4 citations
- High-Precision 3D Measurement of Complex Textured Surfaces Using Multiple Filtering ApproachYuchong Chen, Jian Yu, Shaoyan Gai, Zeyu Cai et al.ICCV 2025
Builds on1
Related papers
- Single-Photon Structured LightVarun Sundar, Sizhuo Ma, Aswin C. Sankaranarayanan, Mohit GuptaCVPR 2022 · 9 citations
- TurboSL: Dense, Accurate and Fast 3D by Neural Inverse Structured LightParsa Mirdehghan, Maxx Wu, Wenzheng Chen, David B. Lindell et al.CVPR 2024 · 5 citations
- Few-Shot Non-Line-of-Sight Imaging with Signal-Surface Collaborative RegularizationXintong Liu, Jianyu Wang, Leping Xiao, Xing Fu et al.CVPR 2023
- Micro-Baseline Structured LightVishwanath Saragadam, Raja Venkata, Jian Wang, Shree K. Nayar et al.ICCV 2019 · 6 citations
- Neural Inverse Rendering for High-Accuracy 3D Measurement of Moving Objects with Fewer Phase-Shifting PatternsYuki Urakawa, Yoshihiro WatanabeICCV 2025 · 1 citation
