避障
障碍物
计算机科学
趋同(经济学)
弹道
协议(科学)
职位(财务)
避碰
控制理论(社会学)
领域(数学)
任务(项目管理)
人工智能
移动机器人
机器人
工程类
数学
控制(管理)
碰撞
天文
计算机安全
财务
政治学
替代医学
纯数学
系统工程
法学
经济
病理
物理
医学
经济增长
作者
Limin Zhang,R. Liu,Boyang Qu,Tao Wei,X. Chai,Yan Li
摘要
Abstract Aiming at the problem of fast and consensus obstacle avoidance of multiple unmanned aerial systems in undirected network, a multi-quadrotor unmanned aerial vehicles UAVs (QUAVs) finite-time consensus obstacle avoidance algorithm is proposed. In this paper, multi-QUAVs establish communication through the leader-following method, and the formation is led by the leader to fly to the target position automatically and avoid obstacles autonomously through the improved artificial potential field method. The finite-time consensus protocol controls multi-QUAVs to form a desired formation quickly, considering the existence of communication and input delay, and rigorously proves the convergence of the proposed protocol. A trajectory segmentation strategy is added to the improved artificial potential field method to reduce trajectory loss and improve the task execution efficiency. The simulation results show that multi-QUAVs can be assembled to form the desired formation quickly, and the QUAV formation can avoid obstacles and maintain the formation unchanged while avoiding obstacles.
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