arXiv:2511.16650cs.CV2025-11被引 1

解决3D场景语义分割中多层级冲突与类别不平衡问题

Late-decoupled 3D Hierarchical Semantic Segmentation with Semantic Prototype Discrimination based Bi-branch Supervision

  • 采用双分支结构,主干与辅助分支协同优化
  • 晚解耦架构缓解多层级间的过拟合与欠拟合矛盾
  • 基于语义原型的双向监督提升小类分割性能

3D层次化语义分割对具身智能应用中多层次、多粒度理解3D场景至关重要。现有方法忽视两大挑战:一是参数共享模型在多标签学习中引发跨层级优化冲突;二是多层级场景下类别不平衡问题难以避免,导致模型性能被主类主导。为此,本文提出一种新框架,包含主3DHS分支与辅助判别分支。为缓解多层级冲突,设计晚解耦3DHS架构,通过粗到细的层级引导与一致性约束,多个解码器有效缓解不同层级间的欠拟合与过拟合矛盾,并在各层级内抑制类别不平衡。进一步引入面向3DHS的语义原型双分支监督机制,学习类别判别性点云特征,并在辅助分支与主分支间实现互监督,增强小类分割能力。在多个数据集和骨干网络上的大量实验表明,该方法达到当前最优3DHS性能,核心模块可作为即插即用组件提升已有方法。

原文摘要 · Abstract (English)

3D hierarchical semantic segmentation (3DHS) is crucial for embodied intelligence applications that demand a multi-grained and multi-hierarchy understanding of 3D scenes. Despite the progress, previous 3DHS methods have overlooked following two challenges: I) multi-label learning with a parameter-sharing model can lead to multi-hierarchy conflicts in cross-hierarchy optimization, and II) the class imbalance issue is inevitable across multiple hierarchies of 3D scenes, which makes the model performance become dominated by major classes. To address these issues, we propose a novel framework with a primary 3DHS branch and an auxiliary discrimination branch. Specifically, to alleviate the multi-hierarchy conflicts, we propose a late-decoupled 3DHS framework which employs multiple decoders with the coarse-to-fine hierarchical guidance and consistency. The late-decoupled architecture can mitigate the underfitting and overfitting conflicts among multiple hierarchies and can also constrain the class imbalance problem in each individual hierarchy. Moreover, we introduce a 3DHS-oriented semantic prototype based bi-branch supervision mechanism, which additionally learns class-wise discriminative point cloud features and performs mutual supervision between the auxiliary and 3DHS branches, to enhance the class-imbalance segmentation. Extensive experiments on multiple datasets and backbones demonstrate that our approach achieves state-of-the-art 3DHS performance, and its core components can also be used as a plug-and-play enhancement to improve previous methods.

3D分割层次化类别平衡双分支

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