Litcius/Paper detail

Neural-IMLS: Self-Supervised Implicit Moving Least-Squares Network for Surface Reconstruction

Zixiong Wang, Pengfei Wang, Peng‐Shuai Wang, Qiujie Dong, Junjie Gao, Shuangmin Chen, Shiqing Xin, Changhe Tu, Wenping Wang

2023IEEE Transactions on Visualization and Computer Graphics18 citationsDOI

Abstract

Surface reconstruction is a challenging task when input point clouds, especially real scans, are noisy and lack normals. Observing that the Multilayer Perceptron (MLP) and the implicit moving least-square function (IMLS) provide a dual representation of the underlying surface, we introduce Neural-IMLS, a novel approach that directly learns a noise-resistant signed distance function (SDF) from unoriented raw point clouds in a self-supervised manner. In particular, IMLS regularizes MLP by providing estimated SDFs near the surface and helps enhance its ability to represent geometric details and sharp features, while MLP regularizes IMLS by providing estimated normals. We prove that at convergence, our neural network produces a faithful SDF whose zero-level set approximates the underlying surface due to the mutual learning mechanism between the MLP and the IMLS. Extensive experiments on various benchmarks, including synthetic and real scans, show that Neural-IMLS can reconstruct faithful shapes even with noise and missing parts. The source code can be found at https://github.com/bearprin/Neural-IMLS.

Topics & Concepts

Artificial neural networkArtificial intelligenceComputer scienceSigned distance functionPoint cloudPattern recognition (psychology)Algorithm3D Shape Modeling and AnalysisAdvanced Numerical Analysis TechniquesOptical measurement and interference techniques