arXiv:2510.15639cs.RO2025-10被引 2

可变刚度连杆让无人机机械臂更灵活安全

Integration of a Variable Stiffness Link for Long-Reach Aerial Manipulation

  • 用可调刚度连杆替代传统刚性或绳索连接
  • 柔性模式减震,刚性模式提升操作精度
  • 适合需要稳定抓取与抗干扰的远程无人机任务

本文提出将可变刚度连杆(VSL)集成于长臂空中机械臂系统中,实现多旋翼飞行器与双臂机械臂间可调节的机械耦合。传统长臂系统依赖刚性或缆绳连接,限制精度或向飞行器传递扰动。所提VSL通过可调刚度机制,使连杆在任务需求下表现为柔性绳索或刚性杆。系统搭载于配备LiCAS双臂机械臂的四旋翼上,通过遥控实验验证,涵盖外部干扰与包裹运输任务。结果表明,调节连杆刚度显著改变无人机与负载间的动态交互:柔性配置有效抑制外部冲击和气流扰动,刚性配置则在操作阶段提升位置精度。该设计验证了VSL在柔顺性与精度间提供可控权衡的能力,增强系统灵活性与安全性。未来工作将聚焦自主刚度调节、多绳构型、协同空中操作及用户研究,以进一步评估其在遥控与半自主任务中的表现。

原文摘要 · Abstract (English)

This paper presents the integration of a Variable Stiffness Link (VSL) for long-reach aerial manipulation, enabling adaptable mechanical coupling between an aerial multirotor platform and a dual-arm manipulator. Conventional long-reach manipulation systems rely on rigid or cable connections, which limit precision or transmit disturbances to the aerial vehicle. The proposed VSL introduces an adjustable stiffness mechanism that allows the link to behave either as a flexible rope or as a rigid rod, depending on task requirements. The system is mounted on a quadrotor equipped with the LiCAS dual-arm manipulator and evaluated through teleoperated experiments, involving external disturbances and parcel transportation tasks. Results demonstrate that varying the link stiffness significantly modifies the dynamic interaction between the UAV and the payload. The flexible configuration attenuates external impacts and aerodynamic perturbations, while the rigid configuration improves positional accuracy during manipulation phases. These results confirm that VSL enhances versatility and safety, providing a controllable trade-off between compliance and precision. Future work will focus on autonomous stiffness regulation, multi-rope configurations, cooperative aerial manipulation and user studies to further assess its impact on teleoperated and semi-autonomous aerial tasks.

无人机机械臂可变刚度空中操作

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