QuadHand: A Compact Quadrotor Aerial Manipulator with MRC-SDF-Based Whole-Body Motion Planning
cs.RO
Submitted: 2026-09-28
Updated: 2026-09-28
License: http://creativecommons.org/licenses/by-nc-nd/4.0/
The gist: Uncrewed aerial manipulators (UAMs) integrate robotic arms with aerial platforms for three-dimensional physical interaction.
Terminology
Abstract
Uncrewed aerial manipulators (UAMs) integrate robotic arms with aerial platforms for three-dimensional physical interaction. However, enlarging the workspace increases arm-induced disturbances, while existing geometric representations face a trade-off between geometric fidelity and computational efficiency in close-proximity interaction. This paper presents QuadHand, a compact quadrotor aerial manipulator with a 3-DoF arm, gripper, and battery-assisted passive CoG compensation module to reduce dominant arm-induced disturbances. We further propose MRC-SDF, a Multi-articulated Robot-Centric Signed Distance Field that preserves fine geometric detail with tractable computation, and a spatiotemporal whole-body trajectory optimization framework that jointly optimizes the quadrotor and manipulator for safe and executable trajectory generation. Simulations and real-world experiments demonstrate safe and executable aerial manipulation in complex environments.
Sources
- Grounded Vision-Language Navigation for UAVs with Open-Vocabulary Goal Understanding
- Global End-Effector Pose Control of an Underactuated Aerial Manipulator via Reinforcement Learning
- Flying Hand: End-Effector-Centric Framework for Versatile Aerial Manipulation Teleoperation and Policy Learning
- UMI-on-Air: Embodiment-Aware Guidance for Embodiment-Agnostic Visuomotor Policies
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