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Neural-network-based adaptive secure control for nonstrict-feedback nonlinear interconnected systems under DoS attacks

机译:基于神经网络的非线性反馈非线性互联系统的自适应安全控制,DOS攻击下的非线性互联系统

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This paper investigates the problems of decentralized adaptive neural network (NN) secure control for a class of nonstrict-feedback nonlinear interconnected large-scale systems (NILSs) under denial-of-service (DoS) attacks. The considered systems contain not only unknown interconnected terms but also general nonlinear functions that are not required to be globally Lipschitz, in contrast to most of the existing results in the area. When the system subject to the DoS attack, the sampled data can neither be sent by the sensors nor received by the actuators due to the appearance of DoS in the sensor-to-controller (S-C) and the controller-to-actuator (C-A) communication channels. The data packets sent from the sen-sors are blocked and the traditional backstepping technology cannot be adopted. In order to solve this difficulty, a novel dynamic gain observer is constructed, which can obtain the desired states from the NILSs under DoS attacks. Considering the energy limitation of attackers, two reasonable Assumptions of DoS attack intensity are given. The stability is proven based on the Lyapunov stability theory (LST) and the improved average dwell time (ADT) method. The proposed controller guarantees that all signals in closed-loop systems are bounded, while the tracking error signals converge to a small residual set. Finally, two simulation examples are provided to illustrate the effectiveness of the proposed control method.(c) 2021 Elsevier B.V. All rights reserved.
机译:本文调查了在拒绝服务(DOS)攻击下的一类非经济反馈非线性互连的大型系统(NILS)的分散式自适应神经网络(NN)安全控制的问题。考虑系统不仅包含未知的互联术语,而且还包含一般非线性函数,这些函数不需要全局Lipschitz,与该地区的大多数现有结果相比。当系统经过DOS攻击时,由于传感器到控制器(SC)中的DOS的外观和控制器到执行器(CA),所采样的数据既不能由传感器发送也不能被致动器接收通信渠道。从SEN-SORS发送的数据包被阻止,无法采用传统的BackStepping技术。为了解决这种困难,构建了一种新的动态增益观察者,其可以从DOS攻击下从NILS获得所需状态。考虑到攻击者的能量限制,给出了两种合理的DOS攻击强度假设。基于Lyapunov稳定性理论(LST)和改进的平均停留时间(ADT)方法证明了稳定性。所提出的控制器保证闭环系统中的所有信号都界限,而跟踪误差信号会聚到小的残余集合。最后,提供了两种模拟实施例以说明所提出的控制方法的有效性。(c)2021 Elsevier B.V.保留所有权利。

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