基于事件触发控制的切换随机不确定多智能体系统输出反馈跟踪一致性

IF 4 3区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS
Jiayi Cai;Chengbo Yi;Xue Luo;Canrong Xiao
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引用次数: 0

摘要

本文研究了一类具有不可测状态和未知非线性的切换随机多智能体系统的自适应事件触发输出一致性控制问题。首先,为了克服现有工作中提出的交换质量一致性平均停留时间方法所面临的局限性,引入了模式相关平均停留时间(MDADT)框架下的自适应控制协议,扩大了应用范围。此外,通过一种新的增益调度状态观测器,应用模糊逻辑系统逼近未知的非线性函数。采用动态曲面设计方法,消除了对所构造的虚拟控制器进行导数计算的需要,大大降低了计算的复杂度。此外,在退步设计框架下,开发了切换阈值事件触发控制策略,有效降低通信负载,平衡MASs性能。所提出的控制协议确保闭环系统内的所有信号最终在MDADT切换特性下有界。最后,仿真结果验证了所提出的控制机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Output Feedback Tracking Consensus of Switched Stochastic Uncertain Multiagent Systems via Event-Triggered Control
This article explores the adaptive event-triggered output consensus control problem for a class of switched stochastic multiagent systems (MASs) with unmeasured states and unknown nonlinearity. First, in order to overcome the limitations facing the average dwell-time method of consensus for switched MASs proposed in the existing works, the adaptive control protocol within the framework of mode-dependent average dwell time (MDADT) is introduced to expand the scope of applications. Furthermore, through a novel gain-scheduled state observer, the fuzzy logic systems are applied to approximate the unknown nonlinear functions. The dynamic surface design method is used to remove the need for derivative calculations of the constructed virtual controls, significantly the complexity of calculations. In addition, under the framework of backstepping design, the switching threshold event-triggered control strategy is developed to effectively decrease the communication load and balance the performance of MASs. The proposed control protocol ensures that all signals within the closed-loop systems are ultimately bounded under the MDADT switching property. Finally, the simulation results are obtained to validate the proposed control mechanism.
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来源期刊
IEEE Systems Journal
IEEE Systems Journal 工程技术-电信学
CiteScore
9.80
自引率
6.80%
发文量
572
审稿时长
4.9 months
期刊介绍: This publication provides a systems-level, focused forum for application-oriented manuscripts that address complex systems and system-of-systems of national and global significance. It intends to encourage and facilitate cooperation and interaction among IEEE Societies with systems-level and systems engineering interest, and to attract non-IEEE contributors and readers from around the globe. Our IEEE Systems Council job is to address issues in new ways that are not solvable in the domains of the existing IEEE or other societies or global organizations. These problems do not fit within traditional hierarchical boundaries. For example, disaster response such as that triggered by Hurricane Katrina, tsunamis, or current volcanic eruptions is not solvable by pure engineering solutions. We need to think about changing and enlarging the paradigm to include systems issues.
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