Precise Aggressive Aerial Maneuvers with Sensorimotor Policies
arXiv cs.RO / 4/8/2026
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Key Points
- The paper addresses the challenge of performing precise, aggressive quadrotor maneuvers through narrow openings under full SE(3) attitude/pose constraints, where drones must exploit tilted attitudes and airframe asymmetry to pass tight gaps.
- It proposes sensorimotor policies that directly map onboard vision and proprioception into low-level control commands, enabling gap traversal without prior knowledge of a gap’s position or orientation.
- Training is done with reinforcement learning in simulation, using end-to-end policy distillation and an initialization strategy that leverages trajectories from a model-based planner to reduce exploration difficulties in restricted solution spaces.
- Sim-to-real design and validation show the approach can traverse a rectangular gap with as little as 5 cm clearance, including up to 90-degree tilted orientations, and can react to moving gaps without having been trained on dynamic ones.
- The method is reported to generalize across geometrically diverse gap layouts without manually defined traversal poses or hand-engineered visual features, and is also tested on closely spaced narrow-gap tracks.
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