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Event-triggered secure observer-based control for cyber-physical systems under adversarial attacks

机译:在对抗性攻击下,事件触发基于安全观察者的网络物理系统控制

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Abstract This paper investigates the problem of event-triggered secure observer-based control for continuous-time cyber-physical systems (CPSs) under actuator and sensor attacks. Under event-triggered scheme, the original plant is augmented into a discrete-time system, where the states and attacks are assembled into the state vector of the new system. Then, based on the augmented system, a discrete-time secure observer is presented to estimate the states and attacks. Besides, a novel secure observer-based controller, where the actuator attack estimations are utilized to neutralize the actuator attacks, is proposed. A cone complementarity linearization (CCL) algorithm is provided to co-design the desired observer and controller. It is shown that using the proposed secure observer-based controller, the states of the original plant converge to a small neighborhood of the origin despite attacks. Finally, an illustrative example is given to show the effectiveness of the proposed methods. ]]>
机译:<![cdata [ 抽象 本文调查了执行器和传感器攻击下的连续时间网络物理系统(CPS)的事件触发的安全观察者控制问题。在事件触发方案下,原始工厂被扩展到离散时间系统中,其中州和攻击组装到新系统的状态向量中。然后,基于增强系统,提出了一种离散时间的安全观察者来估计状态和攻击。此外,提出了一种新的安全观察者的控制器,其中利用致动器攻击估计来中和致动器攻击。提供锥形互补线性化(CCL)算法以共同设计所需的观察者和控制器。结果表明,使用所提出的安全观察者的控制器,原始植物的状态仍然攻击尽管攻击。最后,给出了说明性示例来显示所提出的方法的有效性。 ]]>

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