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首页> 外文期刊>IEEE Transactions on Automatic Control >Learning-Based Event-Triggered Control for Synchronization of Passive Multiagent Systems Under Attack
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Learning-Based Event-Triggered Control for Synchronization of Passive Multiagent Systems Under Attack

机译:基于学习的事件触发控制,用于在攻击下的被动多轴系统同步

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摘要

In this article, we study the synchronization of a group of output passive agents that communicate with each other according to an underlying communication graph. A distributed event-triggered control framework that guarantees synchronization and reduces the required communication rate is introduced. A general Byzantine attack on a multiagent system is defined and its negative effects on synchronization are characterized. The Byzantine agents are able to intelligently falsify their data and manipulate the underlying communication graph by altering their control feedback weights. Next, a decentralized decision-making and detection framework is introduced and its steady-state and transient performances are analyzed. Furthermore, a method of identifying Byzantine neighbors and a learning-based procedure for estimating the attack parameters are introduced. Finally, learning-based control frameworks to mitigate the effects of the attack are proposed.
机译:在本文中,我们研究了一组输出被动代理的同步,其根据底层通信图对彼此通信。介绍了一种分布式事件触发的控制框架,可确保同步并降低所需的通信速率。定义了对多元素系统的一般拜占庭式攻击,其对同步的负面影响是特征。拜占庭代理能够通过改变控制反馈权重来智能地伪造其数据并操纵底层通信图。接下来,引入了分散的决策和检测框架,分析了其稳态和瞬态性能。此外,介绍了一种识别拜占庭邻居的方法和用于估计攻击参数的基于学习的过程。最后,提出了基于学习的控制框架来缓解攻击的效果。

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