Algorithms and applications of intelligent swarm cooperative control: A comprehensive survey

IF 11.5 1区 工程技术 Q1 ENGINEERING, AEROSPACE Progress in Aerospace Sciences Pub Date : 2022-11-01 DOI:10.1016/j.paerosci.2022.100869
Xiao-ping Xu , Xiao-ting Yan , Wen-yuan Yang , Kai An , Wei Huang , Yuan Wang
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引用次数: 1

Abstract

The intelligent swarm concept has attracted much interest in recent years. Intelligent swarms have been deployed in many real-world applications, such as transportations, target tracking, search and rescue. Since most of these applications usually have very complex goals, the cooperative control approaches of intelligent swarms are very important, and the requirements of better utilizations of intelligent swarms make the efficient control of swarms a critical challenge that needs to overcome. This article reviews the profound cooperative control approaches of intelligent swarms, mainly focus on three kinds of typical intelligent swarms, UAV swarm, missile swarm and hypersonic aircraft swarm. The formation control approaches and decision-making approaches are both surveyed, as well as some typical real-world scenarios. Each approach is investigated based on different criteria, which highlights its distinct advantages and disadvantages. Finally, we present some discussions and recommendations for further investigation.

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智能群体协同控制算法与应用综述
近年来,智能群体的概念引起了人们的广泛关注。智能蜂群已经部署在许多现实世界的应用中,如运输、目标跟踪、搜索和救援。由于这些应用通常具有非常复杂的目标,因此智能蜂群的协同控制方法非常重要,而更好地利用智能蜂群的要求使蜂群的有效控制成为需要克服的关键挑战。本文综述了智能蜂群的深层协同控制方法,重点介绍了三种典型的智能蜂群:无人机蜂群、导弹蜂群和高超声速飞机蜂群。研究了编队控制方法和决策方法,以及一些典型的现实场景。每种方法都基于不同的标准进行了研究,突出了其独特的优点和缺点。最后,对今后的研究提出了一些讨论和建议。
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来源期刊
Progress in Aerospace Sciences
Progress in Aerospace Sciences 工程技术-工程:宇航
CiteScore
20.20
自引率
3.10%
发文量
41
审稿时长
5 months
期刊介绍: "Progress in Aerospace Sciences" is a prestigious international review journal focusing on research in aerospace sciences and its applications in research organizations, industry, and universities. The journal aims to appeal to a wide range of readers and provide valuable information. The primary content of the journal consists of specially commissioned review articles. These articles serve to collate the latest advancements in the expansive field of aerospace sciences. Unlike other journals, there are no restrictions on the length of papers. Authors are encouraged to furnish specialist readers with a clear and concise summary of recent work, while also providing enough detail for general aerospace readers to stay updated on developments in fields beyond their own expertise.
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