Observer-Based Adaptive NN Tracking Control for Nonlinear NCSs Under Intermittent DoS Attacks: A Finite-Time Prescribed Performance Method

IF 8.7 1区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS IEEE Transactions on Systems Man Cybernetics-Systems Pub Date : 2025-01-01 DOI:10.1109/TSMC.2024.3521025
Guangdeng Zong;Ruonan Liu;Hongzhen Xie;Yudi Wang;Xudong Zhao
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Abstract

This article investigates the adaptive neural network (NN) tracking control problem for nonlinear networked control systems (NCSs) with finite-time prescribed performance (FTPP) subject to intermittent denial-of-service (DoS) attacks. It is noticeable that when the DoS attacker is active, the controller does not receive any information, which makes the controller fail to work. To tackle the challenge, an adaptive NN switching state observer is first built to estimate the unmeasurable states. Second, an FTPP function is constructed to boost the transient and steady-state performances of NCSs. Third, under the framework of the backstepping technique, an adaptive command filter is established by combining the dynamic adaptive technique with the switching state observer, which handles the “complexity explosion” problem and improves the robustness of NCSs. Besides, it is rigorously proved mathematically that the boundedness of all signals in the closed-loop system and the designed controller compels the tracking error to fall into the predefined boundary within a finite time. Finally, an application-oriented example of the single-link robotic arm system is utilized to demonstrate the viability of the proposed control method.
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间歇性DoS攻击下非线性ncs基于观测器的自适应NN跟踪控制:一种有限时间规定性能方法
本文研究了具有有限时间规定性能(FTPP)的非线性网络控制系统(ncs)在间歇性拒绝服务(DoS)攻击下的自适应神经网络(NN)跟踪控制问题。值得注意的是,当DoS攻击者活动时,控制器没有接收到任何信息,这使得控制器无法工作。为了解决这个问题,首先建立了一个自适应神经网络切换状态观测器来估计不可测状态。其次,构造了一个FTPP函数来提高ncs的瞬态和稳态性能。第三,在回溯技术的框架下,将动态自适应技术与切换状态观测器相结合,建立了自适应命令滤波器,处理了“复杂度爆炸”问题,提高了ncs的鲁棒性。此外,从数学上严格证明了闭环系统中所有信号和所设计控制器的有界性迫使跟踪误差在有限时间内落入预定的边界。最后,以单连杆机械臂系统为例,验证了所提控制方法的可行性。
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来源期刊
IEEE Transactions on Systems Man Cybernetics-Systems
IEEE Transactions on Systems Man Cybernetics-Systems AUTOMATION & CONTROL SYSTEMS-COMPUTER SCIENCE, CYBERNETICS
CiteScore
18.50
自引率
11.50%
发文量
812
审稿时长
6 months
期刊介绍: The IEEE Transactions on Systems, Man, and Cybernetics: Systems encompasses the fields of systems engineering, covering issue formulation, analysis, and modeling throughout the systems engineering lifecycle phases. It addresses decision-making, issue interpretation, systems management, processes, and various methods such as optimization, modeling, and simulation in the development and deployment of large systems.
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