基于间歇可用信号的非线性信息物理系统事件自适应容错控制

IF 6.4 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS
Jiawei Ma;Huaguang Zhang;Juan Zhang;Xiyue Guo
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引用次数: 0

摘要

针对具有欺骗攻击和执行器故障的非线性网络物理系统,研究基于事件的自适应容错控制问题。通过模糊逻辑系统的应用,逼近了系统中未知的非线性函数。然后,设计了一种新的状态观测器,该观测器可以由执行器故障和触发攻击状态信号产生的间歇可用信号驱动,实现欺骗攻击后的状态直接触发,避免了后退框架下虚拟控制器不可微的问题。为了避免复杂爆炸问题,引入了动态面控制方法。同时,动态表面滤波信号还实现了事件触发控制,大大节省了通信资源。为了验证所提方法的有效性,给出了两个实例。网络物理系统在智能电网、工业物联网等现代工业过程中得到了广泛的应用。然而,开放的网络环境使系统组件更容易受到攻击,对网络物理系统的运行构成了重大的安全威胁。当攻击者向传感器传递虚假信息时,系统状态变得不可访问,这是一个具有挑战性的问题,因为攻击后信号可用。此外,当执行器受到故障影响时,系统性能会下降,可能导致不稳定。因此,考虑执行器故障和欺骗性攻击的网络物理系统的事件触发控制问题对控制器设计提出了挑战。为了解决上述问题,开发了一种基于间歇可用信号的容错状态观测器。本设计采用回溯递归和自适应技术,实现了系统在欺骗攻击下的稳定性,大大减轻了通信负担,增强了所提控制策略的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Event-Based Adaptive Fault-Tolerant Control for Nonlinear Cyber-Physical Systems via Intermittent Available Signals
This research considers the problem of event-based adaptive fault-tolerant control for nonlinear cyber-physical systems with deception attacks and actuator faults via intermittent available signals. Through the application of fuzzy logic systems, the unknown nonlinear functions of the systems are approximated. Then, a novel state observer is designed that can be driven by actuator faults and intermittent available signals arising from triggered attack-state signals, which can realize directly triggering the states after deception attacks and avoid the problem of virtual controller non-differentiability under the backstepping framework. In order to avoid the complexity explosion problem, the dynamics surface control method is introduced. Meanwhile, the dynamics surface filter signals also realize event-triggered control, and it results in substantial savings in communication resources. To verify the validity of the proposed method, two illustrative examples are presented. Note to Practitioners—Cyber-physical systems are frequently applied in modern industrial processes such as smart grids, industrial Internet of Things and so on. Nevertheless, the open network environment makes system components more vulnerable to attacks, posing a significant security threat to the operation of cyber-physical systems. When attackers deliver deceptive information to the sensors, the system state becomes inaccessible, which is a challenging issue based on the signals available after the attacks. Moreover, when actuators are affected by faults, system performance deteriorates, potentially leading to instability. Consequently, the event-triggered control problem of cyber-physical systems, considering both actuator faults and deceptive attacks, presents challenges for controller design. In order to resolve the issues outlined above, a fault-tolerant state observer based on intermittent available signals is developed. This design employs backstepping recursion and adaptive techniques to achieve stability for system under deception attacks and greatly alleviate communication burden, thereby enhancing the practicality of the proposed control strategy.
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来源期刊
IEEE Transactions on Automation Science and Engineering
IEEE Transactions on Automation Science and Engineering 工程技术-自动化与控制系统
CiteScore
12.50
自引率
14.30%
发文量
404
审稿时长
3.0 months
期刊介绍: The IEEE Transactions on Automation Science and Engineering (T-ASE) publishes fundamental papers on Automation, emphasizing scientific results that advance efficiency, quality, productivity, and reliability. T-ASE encourages interdisciplinary approaches from computer science, control systems, electrical engineering, mathematics, mechanical engineering, operations research, and other fields. T-ASE welcomes results relevant to industries such as agriculture, biotechnology, healthcare, home automation, maintenance, manufacturing, pharmaceuticals, retail, security, service, supply chains, and transportation. T-ASE addresses a research community willing to integrate knowledge across disciplines and industries. For this purpose, each paper includes a Note to Practitioners that summarizes how its results can be applied or how they might be extended to apply in practice.
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