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SymmCompletion: High-Fidelity and High-Consistency Point Cloud Completion with Symmetry Guidance

About

Point cloud completion aims to recover a complete point shape from a partial point cloud. Although existing methods can form satisfactory point clouds in global completeness, they often lose the original geometry details and face the problem of geometric inconsistency between existing point clouds and reconstructed missing parts. To tackle this problem, we introduce SymmCompletion, a highly effective completion method based on symmetry guidance. Our method comprises two primary components: a Local Symmetry Transformation Network (LSTNet) and a Symmetry-Guidance Transformer (SGFormer). First, LSTNet efficiently estimates point-wise local symmetry transformation to transform key geometries of partial inputs into missing regions, thereby generating geometry-align partial-missing pairs and initial point clouds. Second, SGFormer leverages the geometric features of partial-missing pairs as the explicit symmetric guidance that can constrain the refinement process for initial point clouds. As a result, SGFormer can exploit provided priors to form high-fidelity and geometry-consistency final point clouds. Qualitative and quantitative evaluations on several benchmark datasets demonstrate that our method outperforms state-of-the-art completion networks.

Hongyu Yan, Zijun Li, Kunming Luo, Li Lu, Ping Tan• 2025

Related benchmarks

TaskDatasetResultRank
Point Cloud CompletionPCN (test)--
67
Point Cloud CompletionShapeNet-34 (seen categories)
Chamfer Distance (S)0.33
58
Point Cloud CompletionKITTI
MMD1.72
46
Point Cloud CompletionShapeNet-34 unseen categories
CD (Symmetric)0.39
45
Point Cloud CompletionPCN
CD6.28
37
Polygonal Surface ReconstructionABC-plane
CD3.21
21
Structured shape completionABC multi
Chamfer Distance (CD)4.57
18
Point Cloud CompletionShapeNet-55--
18
Point Cloud CompletionABC-multi (100 random samples)
Total Params13.3
15
Building reconstructionBuilding-PCC
Chamfer Distance7.55
15
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