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Stabilization of Networked Control Systems Under DoS Attacks and Output Quantization

机译:DOS攻击下网络控制系统的稳定和输出量化

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This article addresses quantized output feedback stabilization under denial-of-service (DoS) attacks. First, assuming that the duration and frequency of DoS attacks are averagely bounded and that an initial bound of the plant state is known, we propose an output encoding scheme that achieves exponential convergence with finite data rates. Next, we show that a suitable state transformation allows us to remove the assumption on the DoS frequency. Finally, we discuss the derivation of state bounds under DoS attacks and obtain sufficient conditions on the bounds of DoS duration and frequency for achieving Lyapunov stability of the closed-loop system.
机译:本文讨论了拒绝服务(DOS)攻击下的量化输出反馈稳定。首先,假设DOS攻击的持续时间和频率是完全界限的并且已知植物状态的初始界限,我们提出了一种输出编码方案,其实现了具有有限数据速率的指数收敛。接下来,我们表明合适的状态转换允许我们去除DOS频率的假设。最后,我们讨论了DOS攻击下的状态界限的推导,并获得了足够的情况下的DOS持续时间和频率的频率,以实现闭环系统的Lyapunov稳定性。

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