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多点多模式FDI攻击下多智能体系统的输出形成包容:一种弹性脉冲补偿控制方法

Output Formation Containment for Multiagent Systems Under Multipoint Multipattern FDI Attacks: A Resilient Impulsive Compensation Control Approach.

作者信息

Chu Hongjun, Gorbachev Sergey, Yue Dong, Dou Chunxia

出版信息

IEEE Trans Cybern. 2024 Apr;54(4):2606-2617. doi: 10.1109/TCYB.2023.3319647. Epub 2024 Mar 18.

Abstract

The increasing number of devices and frequent interactions of agents from networked multiagent systems (MASs) exacerbate the risks of potential cyber attacks, especially the different point attacks and multiple pattern attacks. This article considers the output formation-containment problem for MASs under multipoint multipattern false data injection (FDI) attacks. The multipoint describes the attacks simultaneously occurring on the sensors, actuators, and communication channels; the multipattern captures that sensor and actuator attack signals are both continuous deterministic variables, and the communication channel attack signals are intermittent random variables, obeying the Bernoulli distribution. For such compromised MASs, a novel hybrid protocol is proposed, which integrates a state observer, an attack estimator, an impulsive interactor and a compensation controller. Thereinto, the state observer and the attack estimator are constructed to recover the unmeasured system states and the unknown FDI attack signals, respectively; the impulsive interactor is designed to guarantee that the neighbor's signals are transmitted only at impulsive instants, and meanwhile the channel attacks are randomly launched; using the recovered signals, the compensation controller is devised to alleviate the effect of attacks. A sufficient condition is identified, under which the output formation containment is achieved with cooperative uniform ultimate boundedness (UUB). Finally, simulation results are carried out to validate the effectiveness and advantages of the proposed approach.

摘要

网络化多智能体系统(MAS)中设备数量的增加以及智能体之间频繁的交互加剧了潜在网络攻击的风险,尤其是不同的单点攻击和多模式攻击。本文研究了多点多模式虚假数据注入(FDI)攻击下MAS的输出编队牵制问题。多点描述了同时发生在传感器、执行器和通信信道上的攻击;多模式则表明传感器和执行器攻击信号均为连续确定性变量,而通信信道攻击信号是间歇性随机变量,服从伯努利分布。针对此类受损的MAS,提出了一种新颖的混合协议,该协议集成了状态观测器、攻击估计器、脉冲交互器和补偿控制器。其中,状态观测器和攻击估计器分别用于恢复未测量的系统状态和未知的FDI攻击信号;脉冲交互器设计用于保证仅在脉冲时刻传输邻居信号,同时随机发起信道攻击;利用恢复的信号,设计补偿控制器以减轻攻击的影响。确定了一个充分条件,在该条件下通过协同一致最终有界性(UUB)实现输出编队牵制。最后,进行了仿真结果以验证所提方法的有效性和优势。

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