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Decentralized Adaptive Fault-Tolerant Control for Complex Systems with Actuator Faults

机译:具有执行器故障的复杂系统的分散自适应容错控制

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摘要

In this paper, an adaptive fault-tolerant control scheme is extended to large-scale interconnected systems with actuator failures and external disturbances. Based on Lyapunov stability theory, a state feedback decentralized controller is designed to compensate for the fault and the disturbance effects, using the overlapping decomposition method. Applying the inclusion principle, the interconnected system is expanded in order to become disjoint subsystems. An adaptive controller is then synthesized separately for each obtained subsystem. The decentralized controller, designed for the expanded system, is finally contracted back to be implemented in the original space. An example of application illustrates the theoretical results and provides a comparative study with other robust and fault-tolerant methods.
机译:本文将自适应容错控制方案扩展到具有执行器故障和外部干扰的大型互连系统。基于李雅普诺夫稳定性理论,设计了一种状态反馈分散控制器,利用重叠分解方法来补偿故障和干扰影响。应用包含原理,互连系统被扩展以成为不相交的子系统。然后针对每个获得的子系统分别合成自适应控制器。最终,为扩展系统设计的分散式控制器最终被收缩以在原始空间中实现。一个应用实例说明了理论结果,并提供了与其他鲁棒和容错方法的比较研究。

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  • 来源
    《Complex Systems》 |2014年第3期|239-257|共19页
  • 作者单位

    Research Unit MACS, University of Gabes Higher Institute of Technological Studies at Djerba, Tunisia B.p. 256, Midoun Djerba, 4116 Tunisia;

    Research Unit MACS, University of Gabes Higher Institute of Industrial Systems at Gabes, Tunisia;

    Research Unit MACS, University of Gabes Higher National Engineering School at Gabes, Tunisia;

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