Disturbance attenuation for neutral Markovian jump systems with multiple delays

The work explores the study of a neutral Markovian jump system that contains multiple delays, external disturbances, and unknown non-linear uncertainties. To overcome the tracking problem, a modified repetitive controller infused with the higher equivalent-input-disturbance approach and the extended...

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Veröffentlicht in:Chaos, solitons and fractals solitons and fractals, 2023-11, Vol.176, p.114140, Article 114140
Hauptverfasser: Mohanapriya, S., Sweety, C. Antony Crispin, Sakthivel, R., Parthasarathy, V.
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Sprache:eng
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Zusammenfassung:The work explores the study of a neutral Markovian jump system that contains multiple delays, external disturbances, and unknown non-linear uncertainties. To overcome the tracking problem, a modified repetitive controller infused with the higher equivalent-input-disturbance approach and the extended Smith predictor approach is suggested. To guarantee the mean-square asymptotic stability of the system, an appropriate mode-dependent loop-based Lyapunov-Krasovskii functional is used. The proposed controller explicitly forces the system output and accurately follows any supplied periodic reference signal. Subsequently, the efficiency of the recommended technique is demonstrated with the simulations that validate the outcomes by comparing them to the existing results. •HEID and ESP-based MRC is designed for neutral Markovian jump systems.•Output tracking is studied under uncertainty, disturbance and multiple delay.•Framed control aids in precise tracking performance by dealing with disturbances.
ISSN:0960-0779
1873-2887
DOI:10.1016/j.chaos.2023.114140