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Delay-independent fault detection and accommodation for non-linear strict-feedback systems with unknown time-varying delays

机译:时滞未知的非线性严格反馈系统的时滞无关故障检测与适应

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摘要

This study presents a time-delay-independent fault detection and adaptive accommodation control scheme for strict-feedback systems with unknown multiple time-delayed non-linear faults. The magnitude and occurrence time of the multiple faults with unknown time-varying delays are unknown. First, a detection threshold is derived to design a time-delay-independent fault detection scheme for the time-delay systems and the fault detectability is analysed. Second, an adaptive approximation design for a time-delay-independent fault accommodation control is addressed. The adaptation technique is applied to learn weights of function approximators and thus the multiple faults can be compensated after the detection of the first fault. It is shown that all signals of the closed-loop system are semi-globally uniformly ultimately bounded and the tracking error converges to an adjustable neighbourhood of the origin.
机译:这项研究提出了一个与时滞无关的故障检测和自适应调节控制方案,用于具有多个未知时滞非线性故障的严格反馈系统。具有未知时变延迟的多个故障的大小和发生时间是未知的。首先,推导检测阈值,为时滞系统设计一种与时滞无关的故障检测方案,并对故障的可检测性进行了分析。其次,提出了一种与时间无关的故障适应控制的自适应近似设计。自适应技术用于学习函数逼近器的权重,因此可以在检测到第一个故障后对多个故障进行补偿。结果表明,闭环系统的所有信号最终都是半全局一致的有界,并且跟踪误差收敛到原点的可调邻域。

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