FDI攻击下非线性多智能体系统的观测器自适应有限时间约束控制

IF 6.4 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS
Haobo Kang;Hongjun Ma;Ben Niu
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引用次数: 0

摘要

研究了一类非线性多智能体系统在虚假数据注入(FDI)攻击下的自适应有限时间控制问题。针对所研究的系统在注入虚假数据时不可避免的不稳定性,采用基于修正坐标变换的反演技术来消除FDI攻击的影响。此外,利用“动态曲面控制”方法克服了虚拟控制律反复求导导致的“复杂性爆炸”问题。然后,通过设计观测器重构质量的不可测状态,构造有限时间自适应输出反馈跟踪包容控制器。结果表明,闭环系统中的所有信号都是半全局实用有限时间稳定的,并且所有follower的输出收敛于由多个leader的输出跨成的凸包。此外,观测器误差和包容误差可以在有限时间内收敛到原点的一个小邻域内。最后给出了仿真结果,验证了所提出的控制协议的有效性。安全壳控制问题是控制领域的一个热点问题,在实际工程中起着重要作用。特别是对于这种非线性质量问题,其数学模型很难准确地得到。本文研究了非线性质量的自适应有限时间约束控制问题,其模型可以推广到更复杂的工程应用中,如无人机编队和智能交通管理。值得注意的是,在实际应用中经常存在网络安全和不可测状态问题。因此,通过设计观测器重构质量的不可测状态,可以保证闭环系统中的所有信号都是SGPFS。综上所述,本文提出了一种自适应有限时间围堵控制策略,为实际应用中质量围堵控制的发展做出了贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observer-Based Adaptive Finite-Time Containment Control for Nonlinear Multiagent Systems Subject to FDI Attacks
This paper investigates the adaptive finite-time containment control problem for a class of nonlinear multiagent systems (MASs) under false data injection (FDI) attacks. On account of the fact that instability is inevitable when the false datas are injected into the researched system, the backstepping technique based on the modified coordinate transformation is applied to eliminate the impact of the FDI attacks. Furthermore, the “dynamic surface control”(DSC) approach is utilized to overcome the issue of “explosion of complexity” caused by repeatedly taking derivatives for the virtual control laws. Then, by designing an observer to refactor the immeasurable states of the MASs, a finite-time adaptive output-feedback tracking containment controller is constructed. It is shown that all the signals in the closed-loop systems are semi-globally practical finite-time stability(SGPFS), and the outputs of all the followers converge to the convex hull spanned by the multiple leaders’s outputs. Besides, the observer errors and the containment errors can converge to a small neighborhood of the origin in finite time. Finally, the simulation results are presented to demonstrate the effectiveness of the proposed containment control protocol. Note to Practitioners—The containment control problem is a hot topic in the field of control, which plays an important role in practical engineering. Especially for this problem of nonlinear MASs, the mathematical models are difficult to be obtained accurately. This paper investigates the adaptive finite-time containment control problem for the nonlinear MASs, whose model can be extended to more complex engineering applications, such as UAV formations and intelligent traffic management. It is worth noting that network security and unmeasured state problems often exist in practical applications. Therefore, by designing an observer to refactor the immeasurable states of the MASs, it is ensured that all the signals in the closed-loop systems are SGPFS. To sum up, the paper proposes an adaptive finite-time containment control strategy, which contributes to the development of containment control for MASs in practical applications.
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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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