Open3DIS: Open-Vocabulary 3D Instance Segmentation with 2D Mask Guidance
Abstract
We introduce Open3DIS a novel solution designed to tackle the problem of Open-Vocabulary Instance Segmentation within 3D scenes. Objects within 3D environments exhibit diverse shapes scales and colors making precise instance-level identification a challenging task. Recent advancements in Open-Vocabulary scene understanding have made significant strides in this area by employing class-agnostic 3D instance proposal networks for object localization and learning queryable features for each 3D mask. While these methods produce high-quality instance proposals they struggle with identifying small-scale and geometrically ambiguous objects. The key idea of our method is a new module that aggregates 2D instance masks across frames and maps them to geometrically coherent point cloud regions as high-quality object proposals addressing the above limitations. These are then combined with 3D class-agnostic instance proposals to include a wide range of objects in the real world. To validate our approach we conducted experiments on three prominent datasets including ScanNet200 S3DIS and Replica demonstrating significant performance gains in segmenting objects with diverse categories over the state-of-the-art approaches.
Cite
Text
Nguyen et al. "Open3DIS: Open-Vocabulary 3D Instance Segmentation with 2D Mask Guidance." Conference on Computer Vision and Pattern Recognition, 2024. doi:10.1109/CVPR52733.2024.00385Markdown
[Nguyen et al. "Open3DIS: Open-Vocabulary 3D Instance Segmentation with 2D Mask Guidance." Conference on Computer Vision and Pattern Recognition, 2024.](https://mlanthology.org/cvpr/2024/nguyen2024cvpr-open3dis/) doi:10.1109/CVPR52733.2024.00385BibTeX
@inproceedings{nguyen2024cvpr-open3dis,
title = {{Open3DIS: Open-Vocabulary 3D Instance Segmentation with 2D Mask Guidance}},
author = {Nguyen, Phuc and Ngo, Tuan Duc and Kalogerakis, Evangelos and Gan, Chuang and Tran, Anh and Pham, Cuong and Nguyen, Khoi},
booktitle = {Conference on Computer Vision and Pattern Recognition},
year = {2024},
pages = {4018-4028},
doi = {10.1109/CVPR52733.2024.00385},
url = {https://mlanthology.org/cvpr/2024/nguyen2024cvpr-open3dis/}
}