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Hierarchical Open-Vocabulary 3D Scene Graphs for Language-Grounded Robot Navigation
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Recent open-vocabulary robot mapping methods enrich dense geometric maps with pre-trained visual-language features. While these maps allow for the prediction of point-wise saliency maps when queried for a certain language concept, large-scale environments and abstract queries beyond the object level still pose a considerable hurdle, ultimately limiting language-grounded robotic navigation. In this work, we present HOV-SG, a hierarchical open-vocabulary 3D scene graph mapping approach for language-grounded robot navigation. Leveraging open-vocabulary vision foundation models, we first obtain state-of-the-art open-vocabulary segment-level maps in 3D and subsequently construct a 3D scene graph hierarchy consisting of floor, room, and object concepts, each enriched with open-vocabulary features. Our approach is able to represent multi-story buildings and allows robotic traversal of those using a cross-floor Voronoi graph. HOV-SG is evaluated on three distinct datasets and surpasses previous baselines in open-vocabulary semantic accuracy on the object, room, and floor level while producing a 75% reduction in representation size compared to dense open-vocabulary maps. In order to prove the efficacy and generalization capabilities of HOV-SG, we showcase successful long-horizon language-conditioned robot navigation within real-world multi-storage environments. We provide code and trial video data at http://hovsg.github.io/.
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Cited by 3 Pith papers
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Vision-Language-Motion Maps: An Open-Vocabulary, Uncertainty-Aware, Queryable Motion Attribute for 3D Scene Maps
VLMM is a 3D map representation where each object carries a fused, uncertainty-aware motion attribute (language-based movability prior + observed geometric motion) that makes motion queries such as 'what is moving' an...
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From Data to Modeling: Fully Open-vocabulary Scene Graph Generation
OvSGTR jointly predicts unseen objects and relationships in scene graphs using a DETR-like transformer, relation-aware pre-training, and knowledge distillation, achieving state-of-the-art results on VG150 and GQA200.
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