针对非周期性DoS攻击,通过事件触发策略重置基于观察者的多代理网络遏制协议

IF 3.5 2区 数学 Q1 MATHEMATICS, APPLIED
Dawei Zhao , Wenkang Xiang , Weizhao Song , Lijuan Xu , Chuan Chen , Zhen Wang
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引用次数: 0

摘要

本文利用有向图中的事件触发策略研究了受非周期性拒绝服务攻击影响的多代理系统(MASs)的遏制控制问题。为了克服Luenberger观测器需要在上升时间和超调量之间进行权衡的局限性,我们设计了一种具有改进误差收敛性能和更合理的重置条件的重置观测器来估计质量的状态。为了节约通信资源,我们在基于复位观察器的包含控制器中引入了ETS。为了避免芝诺行为,引入了一种称为“无芝诺触发器”的触发器,它通过设置固定的触发间隔作为事件触发间隔的下界来防止芝诺行为。最后,通过一个无人机编队案例验证了所设计协议的有效性。通过复位观测器与Luenberger观测器的比较,证明了复位观测器的优越性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reset observer-based containment protocol via event-triggered strategy for multi-agent networks against aperiodic DoS attacks
This article investigates the containment control problem for multi-agent systems (MASs) that are affected by aperiodic denial-of-service attacks using event-triggered strategies (ETSs) in a directed graph. To overcome the limitation of the Luenberger observer, which requires a trade-off between rise time and overshoot, we design a reset observer with improved error convergence performance and more reasonable reset conditions to estimate the states of the MASs. To conserve communication resources, we introduce an ETS into the reset observer-based containment controller. To avoid Zeno behavior, a trigger known as the “Zeno-free trigger” is introduced, which prevents Zeno behavior by setting a fixed triggering interval as the lower bound of the event-triggered interval. Finally, the effectiveness of the designed protocol is demonstrated through a case involving a formation of unmanned air vehicles (UAVs). By comparing the reset observer with the Luenberger observer, the superior performance of the reset observer is demonstrated.
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来源期刊
CiteScore
7.90
自引率
10.00%
发文量
755
审稿时长
36 days
期刊介绍: Applied Mathematics and Computation addresses work at the interface between applied mathematics, numerical computation, and applications of systems – oriented ideas to the physical, biological, social, and behavioral sciences, and emphasizes papers of a computational nature focusing on new algorithms, their analysis and numerical results. In addition to presenting research papers, Applied Mathematics and Computation publishes review articles and single–topics issues.
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