服务拒绝攻击
计算机科学
控制器(灌溉)
分布式计算
多智能体系统
观察员(物理)
控制理论(社会学)
执行机构
共识
计算机安全
控制(管理)
事件(粒子物理)
物理
互联网
量子力学
人工智能
万维网
农学
生物
作者
Yang Yang,Yanfei Li,Dong Yue,Yu‐Chu Tian,Xiaohua Ding
标识
DOI:10.1109/tcyb.2020.2979342
摘要
Consensus control of multiagent systems (MASs) has applications in various domains. As MASs work in networked environments, their security control becomes critically desirable in response to various cyberattacks, such as denial of service (DoS). Efforts have been made in the development of both time- and event-triggered consensus control of MASs. However, there is a lack of precise calculation of control input during the attacking periods. To address this issue, a distributed secure consensus control with event triggering is developed for linear leader-following MASs under DoS attacks. It is designed with a dual-terminal event-triggered mechanism, which schedules information transmission through two triggered functions for each follower: one on the measurement channel (sensor-to-controller) and the other on the control channel (controller-to-actuator). To deal with DoS attacks, the combined states in the triggered functions are replaced by their estimations from an observer. Sufficient conditions are established for the duration and frequency of DoS attacks. To remove continuous monitoring of the measurement errors, a self-triggered secure control scheme is further developed, which combines the system states and other information at past triggered instants. Theoretical analysis shows that the followers in MASs under DoS attacks are able to track the leader and meanwhile the Zeno behavior is excluded. Case studies are conducted to demonstrate the effectiveness of our distributed secure consensus control of MASs.
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