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Finite-Time Performance Recovery Strategy-based NCE Adaptive Neural Control for Networked Nonlinear Systems against DoS Attack

机译:基于有限时间性能恢复策略的网络非线性系统对DOS攻击的基于NCE自适应神经控制

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Networked control design is essential to enable normal operation and further accomplish performance improvement of the cyber-physical systems. In this work, a resilient control scheme is presented for the networked nonlinear system under the denial-of-service (DoS) attack and the system uncertainty. Through synthesizing a self regulation system, this scheme is capable of releasing the prescribed performance when attack is active and recovering that in finite-time after the attack is slept. Meanwhile, the neural network is employed to approximate the system uncertainty. Particularly, the update law possesses the non-certainty-equivalent (NCE) structure, and then the impact of the DoS attack is totally isolated. Finally, the numerical simulation is presented to illustrate the effectiveness and benefits of the estimation scheme and the control design.
机译:网络控制设计对于实现正常运行并进一步完成网络物理系统的性能改进至关重要。 在这项工作中,在拒绝服务(DOS)攻击和系统不确定性下,为网络非线性系统提供了弹性控制方案。 通过合成自我调节系统,该方案能够在攻击激活并恢复攻击后的有限时间时释放规定的性能。 同时,采用神经网络来近似系统不确定性。 特别是,更新法拥有非确定性等效(NCE)结构,然后完全隔离DOS攻击的影响。 最后,提出了数值模拟以说明估计方案和控制设计的有效性和益处。

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