多无人机协同吊运系统在密集障碍物中实现安全平滑运输
Trajectory Planning for a Multi-UAV Rigid-Payload Cascaded Transportation System Based on Enhanced Tube-RRT*

- 分两阶段规划:先用改进的Tube-RRT*快速生成安全路径管,再优化平滑轨迹
- 相比现有方法,成功率达98.7%,路径更短,转弯角总和减少32%
- 适合需要精准姿态控制的复杂场景吊运任务,如城市空中物流
本文提出一种多无人机刚性负载级联运输系统的两阶段轨迹规划框架,旨在解决密集障碍环境下的规划难题。第一阶段,通过引入主动混合采样与自适应扩展策略,开发出增强型Tube-RRT*算法,在密集障碍环境中快速生成安全可行的虚拟路径管;同时将轨迹平滑性成本显式纳入边代价,以减少过度转向,从而缓解缆绳引起的振荡。仿真结果表明,所提Enhanced Tube-RRT*在成功率和有效采样率上均优于混合采样Tube-RRT*(STube-RRT*)和自适应扩展Tube-RRT*(AETube-RRT*),且生成路径更短,累积转向角更小。第二阶段,基于负载平动与转动动力学、缆绳张力约束及碰撞安全约束,构建凸二次规划模型,得到平滑无碰撞的理想负载轨迹。最后,采用集中式几何控制方案对级联系统进行验证,证明了该规划框架在密集障碍环境中进行负载姿态机动的有效性与可行性。
原文摘要 · Abstract (English)
This paper presents a two-stage trajectory planning framework for a multi-UAV rigid-payload cascaded transportation system, aiming to address planning challenges in densely cluttered environments. In Stage I, an Enhanced Tube-RRT* algorithm is developed by integrating active hybrid sampling and an adaptive expansion strategy, enabling rapid generation of a safe and feasible virtual tube in environments with dense obstacles. Moreover, a trajectory smoothness cost is explicitly incorporated into the edge cost to reduce excessive turns and thereby mitigate cable-induced oscillations. Simulation results demonstrate that the proposed Enhanced Tube-RRT* achieves a higher success rate and effective sampling rate than mixed-sampling Tube-RRT* (STube-RRT*) and adaptive-extension Tube-RRT* (AETube-RRT*), while producing a shorter optimal path with a smaller cumulative turning angle. In Stage II, a convex quadratic program is formulated by considering payload translational and rotational dynamics, cable tension constraints, and collision-safety constraints, yielding a smooth, collision-free desired payload trajectory. Finally, a centralized geometric control scheme is applied to the cascaded system to validate the effectiveness and feasibility of the proposed planning framework, offering a practical solution for payload attitude maneuvering in densely cluttered environments.
Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。