Iterative learning fault-tolerant control of networked systems with quantitative sampling

For the problem of fault-tolerant control of non-linear repetitive systems with quantized error, an iterative learning fault-tolerant controller scheme with a logarithmic quantizer is constructed in this paper. Compared with the existing approaches of observer-based fault-tolerant control, the propo...

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Veröffentlicht in:Nonlinear dynamics 2024-07, Vol.112 (14), p.12203-12234
Hauptverfasser: Yang, Wei, Wei, Shanbi, Xiong, Shihui, Wang, Yu
Format: Artikel
Sprache:eng
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Zusammenfassung:For the problem of fault-tolerant control of non-linear repetitive systems with quantized error, an iterative learning fault-tolerant controller scheme with a logarithmic quantizer is constructed in this paper. Compared with the existing approaches of observer-based fault-tolerant control, the proposed iterative learning observer scheme improve the fault-tolerant control performance in the current iteration by considering the state estimation and fault estimation of the previous iteration, as well as the control error results. Meanwhile, the designed fault-tolerant controller is stable and convergent. Finally, the theoretical results are verified by numerical examples and the relationship between quantized density and controller performance is analysed.
ISSN:0924-090X
1573-269X
DOI:10.1007/s11071-024-09675-9