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A Switched System Approach Against Time-Delay Attacks in Cyber- Physical Systems

机译:Cyebrical Systems中断时滞攻击的交换系统方法

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This paper investigates the modeling and stabilization problem for cyber-physical systems (CPSs) under time-delay attacks. First of all, the attack-induced delays are divided into multiple equilong subintervals and each subinterval is separated into a nominal part and an uncertain part. Then, the system is considered to dwell in different subsystems when the attack-induced delays fall into different subintervals. In this way, the CPS is modeled as a discrete-time switched system with norm-bounded uncertainties. Moreover, the mode-dependent controller is designed to defend the time-delay attacks and guarantee the exponential stability of the closed-loop CPS, which is switched according to the attack-induced delays and implemented combined with the packet-based control strategy. Finally, the experiments of a networked inverted pendulum control system are given to demonstrate the effectiveness of the proposed method.
机译:本文调查了在延时攻击下网络物理系统(CPS)的建模和稳定问题。首先,将攻击引起的延迟分为多个正平的子内壁,每个子间隔被分成名义部分和不确定的部分。然后,当攻击引起的延迟落入不同的子宫内时,系统被认为在不同的子系统中停留。以这种方式,CPS被建模为具有规范界不确定性的离散时间交换系统。此外,依赖模式控制器旨在防御时间延迟攻击并保证闭环CP的指数稳定性,该闭环CPS根据攻击引起的延迟切换,并与基于分组的控制策略组合结合。最后,给出了网络倒立摆控制系统的实验,以证明所提出的方法的有效性。

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