Online Embedding Multi-Scale CLIP Features into 3D Maps
Taguchi, Shun, Deguchi, Hideki
–arXiv.org Artificial Intelligence
This study introduces a novel approach to online embedding of multi-scale CLIP (Contrastive Language-Image Pre-Training) features into 3D maps. By harnessing CLIP, this methodology surpasses the constraints of conventional vocabulary-limited methods and enables the incorporation of semantic information into the resultant maps. While recent approaches have explored the embedding of multi-modal features in maps, they often impose significant computational costs, lacking practicality for exploring unfamiliar environments in real time. Our approach tackles these challenges by efficiently computing and embedding multi-scale CLIP features, thereby facilitating the exploration of unfamiliar environments through real-time map generation. Moreover, the embedding CLIP features into the resultant maps makes offline retrieval via linguistic queries feasible. In essence, our approach simultaneously achieves real-time object search and mapping of unfamiliar environments. Additionally, we propose a zero-shot object-goal navigation system based on our mapping approach, and we validate its efficacy through object-goal navigation, offline object retrieval, and multi-object-goal navigation in both simulated environments and real robot experiments. The findings demonstrate that our method not only exhibits swifter performance than state-of-the-art mapping methods but also surpasses them in terms of the success rate of object-goal navigation tasks.
arXiv.org Artificial Intelligence
Mar-26-2024
- Country:
- Asia > Japan (0.04)
- Europe
- United Kingdom > England
- Greater London > London (0.04)
- Switzerland > Zürich
- Zürich (0.04)
- United Kingdom > England
- Genre:
- Research Report > New Finding (0.88)
- Technology:
- Information Technology > Artificial Intelligence
- Robots (1.00)
- Representation & Reasoning (1.00)
- Machine Learning > Neural Networks (0.46)
- Natural Language
- Large Language Model (0.49)
- Text Processing (0.34)
- Information Technology > Artificial Intelligence