Resilient interval observer-based coordination control for multi-agent systems under stealthy attacks

IF 5.9 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS
Miaohong Luo, Housheng Su, Zhigang Zeng
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引用次数: 0

Abstract

In this paper, the coordination control problem of multi-agent systems (MASs) subjected to stealthy attacks and uncertainties is considered, where the uncertainties refer to unknown external disturbances and initial states. We consider a scenario in which the sensors are maliciously attacked, rendering the traditional interval observer’s bounds ineffective for estimating the system states. By solving the linear programming problem, the maximum destructive attack sequences are generated. A distributed resilient interval observer composed of a resilient framer and a control protocol is designed, in which the construction of control protocol for each agent depends on the framer information of its own and its neighbors. It is demonstrated by the cooperativity theory and the Lyapunov stability theory that the distributed resilient interval observer can not only realize interval-valued state estimation for each agent but also drive the cooperative behavior of MASs. In addition, the observer gain matrix is selected and optimized by solving a semi-definite programming problem to provide tighter bounds for each agent. Meanwhile, the bounds of stealthy attacks are calculated. Finally, through a simulation example, the superiority of the distributed resilient interval observer and the effectiveness of the resilient interval observer-based consensus control algorithms are validated.

隐形攻击下基于弹性区间观测器的多代理系统协调控制
本文考虑了受到隐蔽攻击和不确定性影响的多代理系统(MAS)的协调控制问题,其中不确定性指的是未知的外部干扰和初始状态。我们考虑了这样一种情况:传感器受到恶意攻击,使得传统的区间观测器边界无法有效估计系统状态。通过求解线性规划问题,可以生成破坏性最大的攻击序列。设计了一种由弹性分帧器和控制协议组成的分布式弹性区间观测器,其中每个代理的控制协议的构建取决于其自身及其邻居的分帧器信息。合作性理论和 Lyapunov 稳定性理论证明,分布式弹性区间观测器不仅能实现每个代理的区间值状态估计,还能驱动 MAS 的合作行为。此外,观测器增益矩阵是通过求解半有限编程问题来选择和优化的,从而为每个代理提供更严格的约束。同时,还计算了隐形攻击的界限。最后,通过一个仿真实例,验证了分布式弹性区间观测器的优越性和基于弹性区间观测器的共识控制算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Automatica
Automatica 工程技术-工程:电子与电气
CiteScore
10.70
自引率
7.80%
发文量
617
审稿时长
5 months
期刊介绍: Automatica is a leading archival publication in the field of systems and control. The field encompasses today a broad set of areas and topics, and is thriving not only within itself but also in terms of its impact on other fields, such as communications, computers, biology, energy and economics. Since its inception in 1963, Automatica has kept abreast with the evolution of the field over the years, and has emerged as a leading publication driving the trends in the field. After being founded in 1963, Automatica became a journal of the International Federation of Automatic Control (IFAC) in 1969. It features a characteristic blend of theoretical and applied papers of archival, lasting value, reporting cutting edge research results by authors across the globe. It features articles in distinct categories, including regular, brief and survey papers, technical communiqués, correspondence items, as well as reviews on published books of interest to the readership. It occasionally publishes special issues on emerging new topics or established mature topics of interest to a broad audience. Automatica solicits original high-quality contributions in all the categories listed above, and in all areas of systems and control interpreted in a broad sense and evolving constantly. They may be submitted directly to a subject editor or to the Editor-in-Chief if not sure about the subject area. Editorial procedures in place assure careful, fair, and prompt handling of all submitted articles. Accepted papers appear in the journal in the shortest time feasible given production time constraints.
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