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Distributed memoryless detection and accommodation of unknown time-delayed interaction faults in a class of interconnected nonlinear systems

机译:一类相互连接的非线性系统中的分布式无记忆检测和适应未知的时滞相互作用故障

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摘要

This paper addresses a memoryless design problem for the distributed fault detection and accommodation (FDA) of a class of large-scale nonlinear systems in the presence of nonlinear interaction faults with unknown time delays. Existing works designed distributed FDA schemes without considering interaction delays. However, we consider these delays, design distributed memoryless detection estimators and time-varying thresholds for detecting unknown time-delayed interaction faults, and analyze the distributed fault detectability. Then, an approximation-based distributed fault accommodation scheme which is independent of time delays is constructed via Lyapunov stability theorem. Thus, it is shown that all signals of the total controlled closed-loop system are uniformly ultimately bounded and tracking errors of subsystems converge to an adjustable neighborhood of the origin. Finally, a simulation example is presented to show the effectiveness of the proposed methodology. (C) 2015 Elsevier Inc. All rights reserved.
机译:本文针对存在未知时延的非线性相互作用故障,针对一类大型非线性系统的分布式故障检测与处理(FDA),解决了无记忆设计问题。现有工作设计了分布式FDA计划,而没有考虑相互作用的延迟。但是,我们考虑了这些延迟,设计了分布式无记忆检测估计器和时变阈值以检测未知的延时交互故障,并分析了分布式故障的可检测性。然后,通过Lyapunov稳定性定理构造了一种与时间延迟无关的基于近似的分布式故障适应方案。因此,表明了整个受控闭环系统的所有信号最终都统一受到限制,子系统的跟踪误差收敛到原点的可调邻域。最后,给出了一个仿真实例来说明所提方法的有效性。 (C)2015 Elsevier Inc.保留所有权利。

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