Cooperative Capture Strategy for a Group of Slower UAVs to Intercept One Faster Intruder in 3-D Space

IF 5.7 2区 计算机科学 Q1 ENGINEERING, AEROSPACE IEEE Transactions on Aerospace and Electronic Systems Pub Date : 2025-02-27 DOI:10.1109/TAES.2025.3545780
Lin Chen;Yuanqing Xia
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Abstract

This article investigates a reach–avoid game between a group of unmanned aerial vehicles(UAVs) and one faster intruder in the 3-D space. The intruder intends to enter a goal area without being captured, whereas the UAVs try to capture the intruder before it enters. First, we analyze the scenario of one slower UAV against a single intruder, identifying the dominant area of the slower UAV for successful capture using the properties of the Apollonius sphere. These findings are then applied to the engagement between a group of UAVs and the intruder, transforming the multiplayer game from a traditional game-theoretic framework to a swarm control problem. This involves coordinating the UAVs to ensure their joint dominant areas cover the intruder's potential paths and approach the intruder. A nominal capture control law integrating covering, containment, and proximity control components is then proposed to achieve these goals. Besides, this nominal control law is integrated with a control barrier function within a quadratically constrained quadratic program framework, which allows for optimizing the nominal control law to prevent the formation of a dominant blind zone and increase capture probability. Finally, simulations are conducted to verify the effectiveness of the proposed algorithm.
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一组速度较慢的无人机在三维空间拦截一个速度较快的入侵者的合作捕获策略
本文研究了一组无人机与一个速度更快的入侵者在三维空间中的到达-避开博弈。入侵者试图在不被捕获的情况下进入目标区域,而无人机则试图在入侵者进入之前捕获入侵者。首先,我们分析了一架较慢的无人机对抗单一入侵者的场景,确定了较慢无人机的优势区域,以便利用阿波罗尼乌斯球的特性成功捕获。然后将这些发现应用于一组无人机和入侵者之间的交战,将多人游戏从传统的博弈论框架转变为群体控制问题。这包括协调无人机,以确保它们的联合主导区域覆盖入侵者的潜在路径并接近入侵者。一个标称捕获控制律集成覆盖,遏制和接近控制组件,然后提出实现这些目标。此外,在二次约束的二次规划框架内,将该标称控制律与控制障碍函数相结合,可以对标称控制律进行优化,防止优势盲区的形成,提高捕获概率。最后,通过仿真验证了所提算法的有效性。
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来源期刊
CiteScore
7.80
自引率
13.60%
发文量
433
审稿时长
8.7 months
期刊介绍: IEEE Transactions on Aerospace and Electronic Systems focuses on the organization, design, development, integration, and operation of complex systems for space, air, ocean, or ground environment. These systems include, but are not limited to, navigation, avionics, spacecraft, aerospace power, radar, sonar, telemetry, defense, transportation, automated testing, and command and control.
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