$H_{infty}$controller design of event-triggered networked cont'/> <tex>$H_{infty}$</tex>Controller Design of Event-Triggered Networked Control Systems Under Quantization and Denial-of-Service Attacks
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$H_{infty}$Controller Design of Event-Triggered Networked Control Systems Under Quantization and Denial-of-Service Attacks

机译:量化和拒绝服务攻击下事件触发的网络控制系统的 $ H _ { infty} $ 控制器设计

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This paper focuses on the problem of$H_{infty}$controller design of event-triggered networked control systems (NCSs) under quantization and Denial-of-Service attacks. Firstly, a new event-triggering transmission scheme is proposed, in order to lighten the load of computing and communications, while offsetting DoS attacks. A unified model containing event-triggering mechanism, quantization and DoS attacks is established by using time delay modeling approach. Then the sufficient conditions can be obtained for ensuring the exponential stability of the system under quantization and DoS attacks by using the time-varying Lyapunov functional method. The co-design of the event-triggering parameters and the controller parameter of the controller are obtained. Finally a simulation example is used to prove the effectiveness and feasibility of the obtained results.
机译:本文着重于 $ H _ {\ infty} $ 量化和拒绝服务攻击下的事件触发网络控制系统(NCS)的控制器设计。首先,提出了一种新的事件触发传输方案,以减轻计算和通信的负担,同时抵消DoS攻击。利用时延建模方法建立了包含事件触发机制,量化机制和DoS攻击的统一模型。然后,通过使用时变Lyapunov函数方法,可以获得足够的条件来确保系统在量化和DoS攻击下的指数稳定性。获得了事件触发参数与控制器的控制器参数的协同设计。最后通过仿真实例验证了所得结果的有效性和可行性。

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