Leader-Following $H_{\infty}$ Fault-Tolerant Consensus of Nonlinear Multi-agent Systems with External Disturbances

M. Salimifard, H. Talebi
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引用次数: 1

Abstract

This paper presents an active robust fault-tolerant consensus control of nonlinear Multi-Agent Systems (MASs) with external disturbances. It is assumed that the states of the follower agents are not available for measurement. Moreover, they might be simultaneously subjected to multiplicative actuator faults. Therefore, an integrated design and analysis of an observer-based fault estimation and fault-tolerant cooperative control schemes will be proposed. In this regard, a fuzzy wavelet neural network is introduced in order to approximate the unknown time-varying multiplicative fault function. Further, a decentralized robust $H_{\infty}$ fault-tolerant consensus protocol using linear matrix inequalities will be developed. Finally, a simulation is presented to demonstrate the benefits of the proposed algorithm.
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领导跟随 $H_{\infty}$ 具有外部干扰的非线性多智能体系统的容错一致性
提出了一种具有外部干扰的非线性多智能体系统的主动鲁棒容错一致控制方法。假设跟随agent的状态不可用于测量。此外,它们可能同时受到多重执行器故障的影响。因此,本文提出了一种基于观测器的故障估计与容错协同控制方案的集成设计与分析。为此,引入模糊小波神经网络来逼近未知的时变乘性故障函数。此外,将开发一个使用线性矩阵不等式的去中心化鲁棒$H_{\infty}$容错共识协议。最后,通过仿真验证了该算法的优越性。
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