Open3DSG: Open-Vocabulary 3D Scene Graphs from Point Clouds with Queryable Objects and Open-Set Relationships
Sebastian Koch, Narunas Vaskevicius, Mirco Colosi, Pedro Hermosilla, Timo Ropinski
Abstract
Current approaches for 3D scene graph prediction rely on labeled datasets to train models for a fixed set of known object classes and relationship categories. We present Open3DSG, an alternative approach to learn 3D scene graph prediction in an open world without requiring labeled scene graph data. We co-embed the features from a 3D scene graph prediction backbone with the feature space of powerful open world 2D vision language foundation models. This enables us to predict 3D scene graphs from 3D point clouds in a zero-shot manner by querying object classes from an open vocabulary and predicting the inter-object relationships from a grounded LLM with scene graph features and queried object classes as context. Open3DSG is the first 3D point cloud method to predict not only explicit open-vocabulary object classes, but also open-set relationships that are not limited to a predefined label set, making it possible to express rare as well as specific objects and relationships in the predicted 3D scene graph. Our experiments show that Open3DSG is effective at predicting arbitrary object classes as well as their complex inter-object relationships describing spatial, supportive, semantic and comparative relationships.
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 309f8afc-4777-47dd-bb10-2ab906b5b25aCited by top-tier papers24
- ImaginateAR: AI-Assisted In-Situ Authoring in Augmented RealityJaewook Lee, Filippo Aleotti, Diego Mazala, Guillermo Garcia-Hernando et al.UIST 2025 · 15 citations
- FunFact: Building Probabilistic Functional 3D Scene Graphs via Factor-Graph ReasoningZhengyu Fu, René Zurbrügg, Kaixian Qu, Marc Pollefeys et al.CVPR 2026 · 8 citations
- ReLaGS: Relational Language Gaussian SplattingYaxu Xie, Abdalla Arafa, Alireza Javanmardi, Christen Millerdurai et al.CVPR 2026 · 7 citations
- 3DGraphLLM: Combining Semantic Graphs and Large Language Models for 3D Scene UnderstandingTatiana Zemskova, Dmitry A. YudinICCV 2025 · 7 citations
- TopViewRS: Vision-Language Models as Top-View Spatial ReasonersChengzu Li, Caiqi Zhang, Han Zhou, Nigel Collier et al.EMNLP 2024 · 5 citations
Builds on29
- Learning Transferable Visual Models From Natural Language SupervisionAlec Radford, Jong Wook Kim, Chris Hallacy, Aditya Ramesh et al.ICML 2021 · 47,906 citations
- BLIP-2: Bootstrapping Language-Image Pre-training with Frozen Image Encoders and Large Language ModelsJunnan Li, Dongxu Li, Silvio Savarese, Steven C. H. HoiICML 2023 · 7,873 citations
- BLIP: Bootstrapping Language-Image Pre-training for Unified Vision-Language Understanding and GenerationJunnan Li, Dongxu Li, Caiming Xiong, Steven C. H. HoiICML 2022 · 6,549 citations
- Scaling Up Visual and Vision-Language Representation Learning With Noisy Text SupervisionChao Jia, Yinfei Yang, Ye Xia, Yi-Ting Chen et al.ICML 2021 · 5,401 citations
- InstructBLIP: Towards General-purpose Vision-Language Models with Instruction TuningWenliang Dai, Junnan Li, Dongxu Li, Anthony Meng Huat Tiong et al.NeurIPS 2023 · 4,013 citations
Related papers
- Open-Vocabulary Functional 3D Scene Graphs for Real-World Indoor SpacesChenyangguang Zhang, Alexandros Delitzas, Fangjinhua Wang, Ruida Zhang et al.CVPR 2025
- Open-World 3D Scene Graph Generation for Retrieval-Augmented ReasoningFei Yu, Quan Deng, Shengeng Tang, Yuehua Li et al.AAAI 2026 · 2 citations
- Learning 3D Semantic Scene Graphs From 3D Indoor ReconstructionsJohanna Wald, Helisa Dhamo, Nassir Navab, Federico TombariCVPR 2020
- Learning to Generate Language-Supervised and Open-Vocabulary Scene Graph Using Pre-Trained Visual-Semantic SpaceYong Zhang, Yingwei Pan, Ting Yao, Rui Huang et al.CVPR 2023
- OpenScene: 3D Scene Understanding with Open VocabulariesSongyou Peng, Kyle Genova, Chiyu Max Jiang, Andrea Tagliasacchi et al.CVPR 2023
