株式会社極東書店トップ商品一覧Cooperative Control of Multi-agent Systems: A Scale-Free Protocol Design. 2023 ed.

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Cooperative Control of Multi-agent Systems: A Scale-Free Protocol Design. 2023 ed.

Cooperative Control of Multi-agent Systems: A Scale-Free Protocol Design. 2023 ed.

・ISBN 978-3-031-12953-7 hard EUR 159.99

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お気に入り
著者・編者Liu, Zhenwei / Nojavanzadeh, Donya / Saberi, Ali,
シリーズ (Studies in Systems, Decision and Control)
出版社 (Springer International Publishing AG, SZ)
出版年月2022
ページ数392 pp.
言語ENG
ニュース番号<A02-17782>

解説

This monograph represents the outcome of research effort of the authors on scalable synchronization of large-scale multi-agent systems (MAS). Cooperative control of multi-agent systems has been growing in popularity and is highly interdisciplinary in recent years. The application of synchronization of MAS includes automobile systems, aerospace systems, multiple-satellite GPS, high-resolution satellite imagery, aircraft formations, highway traffic platooning, industrial process control with multiple processes, and more. Most of the proposed protocols in the literature for synchronization of MAS require some knowledge of the communication network such as bounds on the spectrum of the associated Laplacian matrix and the number of agents. These protocols suffer from scale fragility wherein stability properties are lost for large-scale networks or when the communication graph changes.

In the past few years, the authors of this monograph have worked on developing scale-free protocol design for various cases of MAS problems. The key contribution of the monograph is to offer a scale-free design framework and provide scale-free protocols to achieve synchronization, delayed synchronization, and almost synchronization in the presence of input and communication delays, input saturation and external disturbances. The scale-free design framework solely is based on the knowledge of agent models and does not depend on information about the communication network such as the spectrum of the associated Laplacian matrix or size of the network.

Drawing upon their extensive work in this area, the authors provide a thorough treatment of agents with higher-order dynamics, different classes of models for agents, and the underlying networks representing actions of the agents. The high technical level of their presentation and their rigorous mathematical approach make this monograph a timely and valuable resource that will fill a gap in theexisting literature.