针对间歇性拒绝服务攻击的受限多代理系统安全共识控制:一种自适应动态编程方法

IF 3.7 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Zhen Gao;Ning Zhao;Guangdeng Zong;Xudong Zhao
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引用次数: 0

摘要

结合自适应动态规划方法和优化退步策略,研究了具有输入延迟和拒绝服务攻击的约束非线性多智能体系统的安全一致性问题。由于某些agent之间的网络通道在数据传输过程中经常受到攻击者的入侵,我们考虑了攻击睡眠和攻击活动两种情况下的信息传输,并构建了一种具有切换机制的分布式观测器来估计leader的状态信息。为了在保证系统状态不超过约束集的前提下优化系统性能,引入了一种新的性能指标函数和tan型障碍Lyapunov函数(BLF)。此外,通过采用Pade近似和一个中间变量,消除了输入延迟的影响。结果表明,所提出的最优控制可以平滑地引导非线性质量实现跟随-领导共识跟踪目标,并且系统的所有状态都被一致地约束在它们的紧集中。最后,仿真结果验证了该控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secure Consensus Control for Constrained Multi-Agent Systems Against Intermittent Denial-of-Service Attacks: An Adaptive Dynamic Programming Method
Combining the use of the adaptive dynamic programming method and optimized backstepping strategy, this paper focuses on the secure consensus problem for constrained nonlinear multi-agent systems (MASs) subject to denial-of-service (DoS) attacks and input delay. Since network channels between some agents often suffer from intrusions by attackers during data transmission, we consider information transfers in both attack-sleep and attack-active scenarios, and construct a novel distributed observer with a switched mechanism to estimate the leader’s state information. In order to optimize system performances while ensuring that the system states do not exceed constraint sets, a new performance index function and a tan-type barrier Lyapunov function (BLF) are introduced. Besides, by employing the Pade approximation and an intermediate variable, the effect of input delay is removed. As a consequence, the proposed optimal control can smoothly steer the nonlinear MASs to realize the followers-leader consensus tracking goal, and all system states are consistently constrained within their compact sets. Finally, simulation results verify the effectiveness of this control scheme.
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来源期刊
CiteScore
8.50
自引率
2.20%
发文量
86
期刊介绍: The IEEE Journal on Emerging and Selected Topics in Circuits and Systems is published quarterly and solicits, with particular emphasis on emerging areas, special issues on topics that cover the entire scope of the IEEE Circuits and Systems (CAS) Society, namely the theory, analysis, design, tools, and implementation of circuits and systems, spanning their theoretical foundations, applications, and architectures for signal and information processing.
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