Using the Tremaine-Weinberg method, the authors classify NGC 6951's bar as slow, long, and strong, while the bar of NGC 7716 is too weak to be securely classified.
Towards Safe Imitation Learning via Potential Field-Guided Flow Matching
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Deep generative models, particularly diffusion and flow matching models, have recently shown remarkable potential in learning complex policies through imitation learning. However, the safety of generated motions remains overlooked, particularly in complex environments with inherent obstacles. In this work, we address this critical gap by proposing Potential Field-Guided Flow Matching Policy (PF2MP), a novel approach that simultaneously learns task policies and extracts obstacle-related information, represented as a potential field, from the same set of successful demonstrations. During inference, PF2MP modulates the flow matching vector field via the learned potential field, enabling safe motion generation. By leveraging these complementary fields, our approach achieves improved safety without compromising task success across diverse environments, such as navigation tasks and robotic manipulation scenarios. We evaluate PF2MP in both simulation and real-world settings, demonstrating its effectiveness in task space and joint space control. Experimental results demonstrate that PF2MP enhances safety, achieving a significant reduction of collisions compared to baseline policies. This work paves the way for safer motion generation in unstructured and obstaclerich environments.
fields
astro-ph.GA 1years
2025 1verdicts
UNVERDICTED 1representative citing papers
citing papers explorer
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Search for Slow Bars in Two Barred Galaxies with Nuclear Structures: NGC 6951 and NGC 7716
Using the Tremaine-Weinberg method, the authors classify NGC 6951's bar as slow, long, and strong, while the bar of NGC 7716 is too weak to be securely classified.