arXiv:2507.16458cs.ROcs.SY2025-07被引 1

无需控制速度,通过振荡引导实现固定翼无人机编队飞行

Distributed Oscillatory Guidance for Formation Flight of Fixed-Wing Drones

  • 用振荡路径引导无人机,实现无速度控制的编队
  • 通过分布式振幅调节,使编队平均速度可控
  • 适合对速度约束严苛的固定翼无人机集群应用

固定翼无人机自主编队飞行面临挑战,因其速度受严格限制,且通常设计为以恒定空速飞行。本文提出一种算法,无需对速度进行控制即可实现编队飞行。具体而言,引导所有无人机沿特定路径(如平行直线)运动,并在引导向量场之上叠加振荡行为,使无人机趋向路径。该振荡可调控沿路径的平均速度,从而实现机间协调。每架无人机通过与邻近无人机通信,在无向连通图中分布式地闭环调整其振荡幅度。引入一种新型一致性算法,利用非负、非对称饱和函数;由于负振幅不会导致无人机反向或路径速度为负,该设计合理。算法经严格的理论分析验证,结合数值仿真和真实世界编队飞行实验。

原文摘要 · Abstract (English)

The autonomous formation flight of fixed-wing drones is hard when the coordination requires the actuation over their speeds since they are critically bounded and aircraft are mostly designed to fly at a nominal airspeed. This paper proposes an algorithm to achieve formation flights of fixed-wing drones without requiring any actuation over their speed. In particular, we guide all the drones to travel over specific paths, e.g., parallel straight lines, and we superpose an oscillatory behavior onto the guiding vector field that drives the drones to the paths. This oscillation enables control over the average velocity along the path, thereby facilitating inter-drone coordination. Each drone adjusts its oscillation amplitude distributively in a closed-loop manner by communicating with neighboring agents in an undirected and connected graph. A novel consensus algorithm is introduced, leveraging a non-negative, asymmetric saturation function. This unconventional saturation is justified since negative amplitudes do not make drones travel backward or have a negative velocity along the path. Rigorous theoretical analysis of the algorithm is complemented by validation through numerical simulations and a real-world formation flight.

无人机编队分布式控制固定翼飞行器

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