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Research PaperResearchia:202608.14079

FAM-DQ: A Dual-Quadrotor-Based Fully Actuated Aerial Manipulator for High-Torque Interaction

Xuwei Yang

Abstract

Aerial physical interaction requires aerial manipulation platforms to generate large interaction forces and torques while maintaining precise end-effector control. However, conventional underactuated aerial manipulators suffer from strong position-attitude coupling, whereas fully actuated platform designs often face structural complexity, limited payload capacity, and insufficient torque output. This paper presents FAM-DQ, a dual-quadrotor based fully actuated aerial manipulator designed for hig...

Submitted: August 14, 2026Subjects: Robotics; Robotics

Description / Details

Aerial physical interaction requires aerial manipulation platforms to generate large interaction forces and torques while maintaining precise end-effector control. However, conventional underactuated aerial manipulators suffer from strong position-attitude coupling, whereas fully actuated platform designs often face structural complexity, limited payload capacity, and insufficient torque output. This paper presents FAM-DQ, a dual-quadrotor based fully actuated aerial manipulator designed for high-torque physical interaction tasks. By mounting two quadrotor propulsion modules at the ends of a central frame through passive joints, while using a gear-driven servo to regulate the pointing direction, FAM-DQ achieves decoupled 66-DoF end-effector control with omnidirectional manipulation capability and enhanced torque output. Experiments including trajectory tracking, attitude tracking, static torque measurement, and screw driving validate the proposed design. FAM-DQ achieves a maximum torque of 1.019 Nm1.019~\mathrm{N}\cdot\mathrm{m} with a total mass of 0.447 kg0.447~\mathrm{kg}, corresponding to a torque-to-mass ratio of 2.28 Nm/kg2.28~\mathrm{N}\cdot\mathrm{m/kg}.


Source: arXiv:2608.13220v1 - http://arxiv.org/abs/2608.13220v1 PDF: https://arxiv.org/pdf/2608.13220v1 Original Link: http://arxiv.org/abs/2608.13220v1

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Date:
Aug 14, 2026
Topic:
Robotics
Area:
Robotics
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