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H∞ Control for Industrial Cyber-Physical Systems Encountering Reactive DoS Jamming Attacks

机译:遇到反应式DoS干扰攻击的工业网络物理系统的H∞控制

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In this paper, a kind of H control problem is studied for an Industrial Cyber-Physical System (ICPS) which employs the event-triggered mechanism (ETM) in the measurement wireless channel encountering a stealthy and reactive DoS jammer. For the ETM in the measurement channel, the DoS jammer keeps sensing the measurement channel and launches jamming attacks when there is packet transmission and launches DoS jamming attacks to decrease the quality of wireless communication. In order to guarantee the availability of ICPS and consider that the ICPS does not know the DoS jammers' attack strategy, a H observer-based control method is designed by establishing an attack-tolerant mechanism to achieve the desired H disturbance attenuation level, and the controller design problem is transformed to an auxiliary convex optimization problem. Numerical simulation is presented to demonstrate the effectiveness of the proposed H control method finally.
机译:本文中的一种H 针对工业计算机物理系统(ICPS)的控制问题进行了研究,该系统在遇到无线隐身和反应性DoS干扰的测量无线信道中采用了事件触发机制(ETM)。对于测量通道中的ETM,DoS干扰器会继续感测测量通道,并在有数据包传输时发起干扰攻击,并发起DoS干扰攻击以降低无线通信的质量。为了保证ICPS的可用性并考虑到ICPS不知道DoS干扰者的攻击策略, 通过建立一种容忍机制来实现所需的H,设计了基于观察者的控制方法 扰动衰减水平,并将控制器设计问题转化为辅助凸优化问题。进行了数值模拟,以证明所提出的H的有效性。 最终控制方法。

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