九架无人机无需通信与定位系统,在沙漠中自主集群飞行。
A Minimalistic 3D Self-Organized UAV Flocking Approach for Desert Exploration
- 仅用局部相对距离和方位信息实现三维集群编队。
- 实测显示集群在无外部定位下仍保持高一致性和紧密度。
- 适合无卫星信号的复杂地形探索,如沙漠或室内环境。
本文提出一种极简化的多旋翼无人机集群飞行方法。该方法使无人机群在无外部方向信息传递的情况下,实现协同一致的群体运动(集体运动),且无需成员间显式通信。系统仅依赖机载传感器获取邻近无人机的相对距离与方位信息,即可在陡峭地形上方稳定控制任意形状的集群。通过引入Lennard-Jones势函数,实现机器人间的凝聚力维持与碰撞避免。在真实环境中对九架无人机进行实验验证,结果表明该方法可在无全球导航卫星系统(GNSS)环境下运行。系统仅依赖团队此前提出的紫外方向与测距(UVDAR)视觉定位系统,完成相对定位。通过有序性(order)和稳态值指标评估集群的对齐程度与稳定性,验证了其在拒止环境中的可行性与有效性。
原文摘要 · Abstract (English)
In this work, we propose a minimalistic swarm flocking approach for multirotor unmanned aerial vehicles (UAVs). Our approach allows the swarm to achieve cohesively and aligned flocking (collective motion), in a random direction, without externally provided directional information exchange (alignment control). The method relies on minimalistic sensory requirements as it uses only the relative range and bearing of swarm agents in local proximity obtained through onboard sensors on the UAV. Thus, our method is able to stabilize and control the flock of a general shape above a steep terrain without any explicit communication between swarm members. To implement proximal control in a three-dimensional manner, the Lennard-Jones potential function is used to maintain cohesiveness and avoid collisions between robots. The performance of the proposed approach was tested in real-world conditions by experiments with a team of nine UAVs. Experiments also present the usage of our approach on UAVs that are independent of external positioning systems such as the Global Navigation Satellite System (GNSS). Relying only on a relative visual localization through the ultraviolet direction and ranging (UVDAR) system, previously proposed by our group, the experiments verify that our system can be applied in GNSS-denied environments. The degree achieved of alignment and cohesiveness was evaluated using the metrics of order and steady-state value.
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