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PriorNav: Prior Knowledge Enhanced Zero-Shot Goal Navigation via Multi-Step Iterative Reasoning.
Wen Liu1, Xuanshun Zhuang1, Lei Ma1
1School of Electronic Engineering, Beijing University of Posts and Telecommunications, Beijing 100876, China.
PriorNav enhances zero-shot goal navigation by integrating prior knowledge into scene graphs for better reasoning. This framework improves agent success rates in unseen environments across various navigation tasks.
Area of Science:
- Robotics
- Artificial Intelligence
- Computer Vision
Background:
- Zero-shot goal navigation demands robust scene understanding and reasoning for locating targets in novel environments.
- Current methods often fall short due to limited external knowledge integration and weak multi-step reasoning capabilities.
Purpose of the Study:
- To introduce PriorNav, a novel framework designed to enhance zero-shot goal navigation through prior-knowledge integration.
- To improve agent performance in complex navigation tasks by leveraging semantic, instance, and relational knowledge.
Main Methods:
- PriorNav constructs a unified retrievable knowledge space from diverse prior knowledge types.
- It maintains a knowledge-enhanced scene graph by fusing retrieved priors with real-time observations.
- The framework employs progressive decision-making via multi-step iterative reasoning across exploration, verification, and approach stages.
Main Results:
- PriorNav demonstrated significant improvements in success rates: 3.5% for Object-Goal, 13.3% for Image-Instance Goal, and 3.5% for Text-Goal navigation.
- The proposed method outperformed existing training-free baselines across all tested navigation tasks.
- Ablation studies confirmed the efficacy of multi-level prior knowledge, scene-graph enhancement, and iterative reasoning.
Conclusions:
- Integrating prior knowledge with explicit reasoning offers a promising avenue for advancing zero-shot goal navigation.
- PriorNav establishes a new state-of-the-art by effectively combining external knowledge with robust reasoning mechanisms.
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