群体行为
计算机科学
试验台
可扩展性
无人机
窃听
人工智能
计算机安全
计算机网络
遗传学
数据库
生物
作者
Wanying Ruan,Yongbin Sun,Yimin Deng,Haibin Duan
标识
DOI:10.1109/tii.2023.3248075
摘要
Unmanned aerial vehicle (UAV) swarm target defense is a crucial and practical issue about group decision-making and cooperative control in multiagent systems. Hawk-pigeon game architecture is presented in this article to guide UAV swarm target defense. Firstly, a 6-degree-of-freedom UAV model is employed, and the control command converter is derived, which could be widely used in the transformation from the second-order integrator model to the 6-DOF UAV model. Moreover, the attack tactics and pursuit strategies of the defender UAVs are proposed inspired by the hawk's hunting mechanism, and the dynamic model of the attacker UAVs is formulated inspired by pigeon group homing behavior. Furthermore, the victory zone of the hawk-pigeon game is analyzed using the time of interception and explicitly exhibited in isochrones means. The proposed method is scalable and adaptive, adopting distributed decision-making to support large-scale UAV swarm engagement. Finally, comparative experiments in different scenarios demonstrate the effectiveness of the proposed method over state-of-the-art target-attacker-defender game methods on the win rate, the number of captures, and activity time.
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