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An adaptive control architecture for leader-follower multiagent systems with stochastic disturbances and sensor and actuator attacks

机译:具有随机扰动和传感器和致动器攻击的引导跟随器多向系统的自适应控制架构

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摘要

In this paper, we develop a novel distributed adaptive control architecture for addressing networked multiagent systems subject to stochastic exogenous disturbances with compromised sensor and actuators. Specifically, for a class of linear leader-follower multiagent systems, we develop a new structure of the neighbourhood synchronisation error for the control design protocol of each follower. The proposed control algorithm addresses time-varying multiplicative sensor attacks on the leader state measurements. In addition, the framework addresses time-varying multiplicative actuator attacks on the followers that do not have a communication link with the leader and additive actuator attacks on all follower agents in the network. The proposed adaptive controller guarantees uniform ultimate boundedness of the state tracking error for each agent in a mean-square sense.
机译:在本文中,我们开发了一种新颖的分布式自适应控制架构,用于解决具有随机传感器和执行器的随机外源干扰而进行网络化的多源系统。 具体地,对于一类线性的线性引导者 - 跟随器多极度系统,我们开发了每个跟随器的控制设计协议的邻域同步误差的新结构。 所提出的控制算法解决了对领导状态测量的时变乘法传感器攻击。 此外,该框架还解决了对与网络中所有跟随器代理的领导者和附加致动器攻击没有通信链路的追随者的时变乘法攻击。 所提出的自适应控制器以平均方向的感觉保证每个代理的状态跟踪误差的均匀终极界限。

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