陆空两栖机器人三维集群系统控制

Three-Dimensional Swarm Control for Ground-Air Transitions in Hybrid Aerial-Ground Robots

  • 摘要: 陆空两栖机器人凭借其地面运动与空中飞行的双模态特性,在工程任务领域已得到广泛研究,但在集群控制领域的应用仍相对有限. 这是由于传统集群控制方法多为基于二维平面的群体控制,难以在三维应用场景下的陆空两栖机器人上使用. 针对上述问题,提出了一种融合Boids类群模型动力学特性、控制策略与路径规划方法的陆空两栖机器人集群协同模型,将传统Boids二维集群模型拓展至三维空间. 提出了一种集群领导者独立Z轴(高度轴)路径规划方法,实现了集群系统空地模态无缝转换与空地策略的融合. 仿真实验验证了所提方法的有效性,分析仿真结果验证了所提出方法的可行性和算法的鲁棒性.

     

    Abstract: Hybrid aerial-ground robots, offering both ground locomotion and aerial flight, have been extensively studied in the field of engineering tasks, but they remain under-explored in swarm-control scenarios. This is due to the fact that traditional cluster control methods are predominantly based on two-dimensional planes, making them difficult to apply to hybrid aerial-ground robots in three-dimensional scenarios. To overcome these limitations, a novel model that integrates Boids-model swarm dynamics, control strategies, and path planning methods for hybrid aerial-ground robots was proposed, enabling the extension of conventional two-dimensional swarm models into three-dimensional space. Specifically, an approach that, for the first time, assigns independent Z-axis (altitude) path planning to the swarm leader was introduced, thereby achieving a seamless ground-air transition and effectively integrating ground and aerial strategies. Simulation results validate the feasibility and robustness of the proposed method.

     

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