模块化无人机可空中自组装,实现灵活飞行与协同操作的统一
Self-assembling Modular Aerial Robot for Versatile Aerial Tasks

- 无人机模块通过端部接合口在空中自主拼装成机械臂
- 拼装后零间隙锁定,可稳定完成推拉旋转等物理操作
- 支持单机飞行与集体协作切换,适合复杂环境任务
多旋翼飞行器擅长三维空间机动,尤其小型平台可在复杂狭窄环境中灵巧飞行。而高海拔作业平台需更大尺寸以提供高推力,实现稳定的环境物理交互。二者设计需求矛盾,长期存在机动性与操作鲁棒性的权衡。本文提出LEGION模块化无人机,具备在飞行中自组装能力,仿照蚂蚁群体的自组织行为。每个单元保持灵巧机动性,两端配备带关节的对接接口,可实现端对端自组装为飞行机械臂。实验表明,多个单元能自主完成空中对接,锁紧后通过控制接触力和扭矩实现零间隙锁定,即使在户外也能可靠聚合并实现铰接运动。自重构能力使系统在灵巧飞行与集体协作操作间动态切换,实现推、拉、转、抓、运等核心飞行操作。该自组织机制使无人机群从被动观测者转变为环境主动参与者,拓展了空中物理交互的应用范围。
原文摘要 · Abstract (English)
Multirotor aerial robots excel at maneuvering in three-dimensional space, and recent advances enable nimble navigation in cluttered and confined environments, especially for small airframes. By contrast, platforms built for high-altitude work tend to be larger to deliver high thrust for stable physical interaction with the environment. However, these conflicting design requirements create a long-standing trade-off between nimble navigation and robust aerial manipulation. Here, we present LEGION units, which are reconfigurable modular aerial robots capable of in-flight self-assembly for cooperative manipulation, drawing inspiration from the self-organized collectives formed by ants. Each unit retains nimble maneuverability while joint-equipped docking interfaces at both ends enable end-to-end self-assembly into a flying manipulator. We show that multiple units autonomously dock in flight; once latched, they maintain a zero-clearance interlock by controlling the contact force and torque, enabling reliable aggregation and articulated motion even outdoors. We further show that self-reconfigurability enables morphological switching between nimble individual flight and collective articulated manipulation, while realizing core in-flight manipulation primitives including pushing, pulling, rotating, grasping, and carrying. LEGION's self-organization enables aerial robots, especially in swarms, to shift from passive observers to active participants in their environment, broadening the scope of aerial physical interaction.
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