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首页> 外文期刊>Automatica >Robust adaptive fault-tolerant consensus control for uncertain nonlinear fractional-order multi-agent systems with directed topologies
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Robust adaptive fault-tolerant consensus control for uncertain nonlinear fractional-order multi-agent systems with directed topologies

机译:强大的自适应容错共识控制,对具有定向拓扑的不确定非线性分数多功能级系统的共识控制

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This paper investigates the problem of fault-tolerant consensus control (FTCC) for heterogeneous nonlinear fractional-order multi-agent systems with general directed topology, where the systems are subject to heterogeneous unknown and time-varying inertias, coupling nonlinearities, external disturbances, and actuator failures. A continuous robust adaptive FTCC protocol is designed by using a boundary layer technique to compensate for the time-varying unknown inertias, uncertain coupling dynamics/disturbances, and unpredictable actuation failures simultaneously. By artfully choosing a Lyapunov function and by generalizing an important fractional-order inequality, it is shown that the consensus configuration error converges to an adjustable small residual set in finite time. The proposed robust adaptive FTCC protocol is completely distributed in the sense that there is no need for any global information, and also is less demanding without requiring any detailed dynamic/parameters information or complicated/costly fault detection and diagnosis. The effectiveness of the proposed FTCC scheme is illustrated by numerical simulation. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文研究了具有一般定向拓扑的异质非线性分数阶多剂量系统的容错共识控制(FTCC)的问题,其中系统受到异质的未知和时变惯性,耦合非线性,外部干扰和执行器故障。通过使用边界层技术来补偿时间变化的未知惯性,不确定耦合动力学/干扰和不可预测的致动失效,设计了连续的鲁棒自适应FTCC协议。通过巧妙地选择Lyapunov功能并概括重要的分数阶不等式,表明共识配置误差会收敛于有限时间内的可调小残差集。所提出的鲁棒自适应FTCC协议完全分布,即不需要任何全局信息,并且在不需要任何详细的动态/参数信息或复杂/昂贵的故障检测和诊断,也不需要苛刻的要求。通过数值模拟说明了所提出的FTCC方案的有效性。 (c)2020 elestvier有限公司保留所有权利。

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