Papers › OpenShape: Scaling Up 3D Shape Representation Towards Open-World Understanding

OpenShape: Scaling Up 3D Shape Representation Towards Open-World Understanding

18 May 2023NeurIPS 2023 11arXiv:2305.10764archive 2025-07-28

Minghua Liu, Ruoxi Shi, Kaiming Kuang, Yinhao Zhu, Xuanlin Li, Shizhong Han, Hong Cai, Fatih Porikli, Hao Su

We introduce OpenShape, a method for learning multi-modal joint representations of text, image, and point clouds. We adopt the commonly used multi-modal contrastive learning framework for representation alignment, but with a specific focus on scaling up 3D representations to enable open-world 3D shape understanding. To achieve this, we scale up training data by ensembling multiple 3D datasets and propose several strategies to automatically filter and enrich noisy text descriptions. We also explore and compare strategies for scaling 3D backbone networks and introduce a novel hard negative mining module for more efficient training. We evaluate OpenShape on zero-shot 3D classification benchmarks and demonstrate its superior capabilities for open-world recognition. Specifically, OpenShape achieves a zero-shot accuracy of 46.8% on the 1,156-category Objaverse-LVIS benchmark, compared to less than 10% for existing methods. OpenShape also achieves an accuracy of 85.3% on ModelNet40, outperforming previous zero-shot baseline methods by 20% and performing on par with some fully-supervised methods. Furthermore, we show that our learned embeddings encode a wide range of visual and semantic concepts (e.g., subcategories, color, shape, style) and facilitate fine-grained text-3D and image-3D interactions. Due to their alignment with CLIP embeddings, our learned shape representations can also be integrated with off-the-shelf CLIP-based models for various applications, such as point cloud captioning and point cloud-conditioned image generation.

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Colin97/OpenShape_code mentioned on GitHubpytorchApache-2.0 report

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Tasks

3D Classification3D Shape RepresentationContrastive LearningImage GenerationZero-Shot Transfer 3D Point Cloud ClassificationZero-shot 3D Point Cloud ClassificationZero-shot 3D classification

Results from the paper archive 2025-07-28

TaskDatasetModelMetricValueRank at snapshotLeaderboardReport
Zero-Shot Transfer 3D Point Cloud Classification ModelNet40 OpenShape-PointBERT Accuracy (%) 85.3 #7 of 16 Archive leaderboard report
Zero-Shot Transfer 3D Point Cloud Classification ModelNet40 OpenShape-SparseConv Accuracy (%) 83.4 #9 of 16 Archive leaderboard report

Ranks are positions in the archive's leaderboards as they stood at the 2025-07-28 snapshot. Results published since then are not among these rows, so a rank here is not a current standing.

Methods

CLIPContrastive Learning

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