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CONSENSUS OF HETEROGENEOUS MULTI-AGENT SYSTEMS WITH UNCERTAIN DOS ATTACK: APPLICATION TO MOBILE STAGE VEHICLES

机译:具有不确定DOS攻击的异构多助手系统的共识:在移动舞台车辆中的应用

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摘要

In this paper, the consensus of heterogeneous multi-agent systems (MASs) with uncertain Deny-of-Service (DoS) attack strategies is studied. In our system, all agents are time synchronized and they communicate with each other with a constant sampling period normally. When the system is under attack, all agents use the hold-input mechanism to update the control protocol. By assuming that the attack duration is upper bounded and the occurrence of the attack follows a Markovian jumping process, the closed-loop system in presence of such a kind of random DoS attack is modeled as a Markovian jumping system, and the attack probabilities are allowed to be partially unknown and uncertain. By means of Lyapunov stability theory and Markovian jumping system approach, sufficient conditions are proposed such that the output consensus can be achieved, and the controller gains are determined by solving some matrix inequalities. Finally, a simulation study on the mobile stage vehicles is performed, showing the effectiveness of main results.
机译:在本文中,研究了异构多剂体系(质量)与不确定的拒绝服务(DOS)攻击策略的共识。在我们的系统中,所有代理都是时间同步的,并且通常通常使用恒定的采样周期互相通信。当系统受到攻击时,所有代理都使用保持输入机制来更新控制协议。假设攻击持续时间是上限并且攻击的发生遵循Markovian跳跃过程,则存在这种随机DOS攻击存在的闭环系统被建模为Markovian跳跃系统,并且允许攻击概率部分是未知和不确定的。通过Lyapunov稳定性理论和马尔可夫跳跃系统方法,提出了足够的条件,使得可以实现输出共识,并且通过求解一些矩阵不等式来确定控制器增益。最后,执行对移动阶段车辆的模拟研究,显示主要结果的有效性。

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