控制理论(社会学)
服务拒绝攻击
弹性(材料科学)
执行机构
计算机科学
多智能体系统
有界函数
线性矩阵不等式
共识
控制(管理)
数学优化
数学
互联网
数学分析
物理
人工智能
万维网
热力学
作者
Amir Amini,Arash Mohammadi,Amir Asif,Ming Hou,Konstantinos N. Plataniotis
出处
期刊:IEEE Systems Journal
[Institute of Electrical and Electronics Engineers]
日期:2022-07-08
卷期号:16 (4): 6338-6349
被引量:12
标识
DOI:10.1109/jsyst.2022.3183863
摘要
This article proposes a resilient strategy for leaderless and leader–following consensus in general linear multiagent systems under simultaneous presence of false data injection and denial-of-service (DoS) attacks. To save energy, local control updates and communication between the neighboring agents are based on a distributed periodic event-triggered scheme. Sufficient conditions to guarantee the exponential mean square bounded consensus are derived as linear matrix inequality (LMI) conditions obtained from some delay-dependent Lyapunov–Krasovskii functionals. The proposed design framework computes the required consensus control gain based on a desired level of resilience to DoS. The guaranteed level of resilience in our proposed LMI-based method is less conservative (more realistic) compared to the existing analytical solutions. Two physical constraints, namely nonuniform time-varying communication delay and actuator faults, are also included in the problem formulation to enhance the practicability of the proposed solution. Simulations results demonstrate the effectiveness of the proposed framework in the presence of the considered cyberthreats and physical constraints.
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