Finite-time stabilization of T–S fuzzy semi-Markov switching systems: A coupling memory sampled-data control approach

The present draft investigates the finite-time stabilization of T–S fuzzy semi-Markov switching systems by using a coupling memory sampled-data control approach. The main study concerned is how to effectively design the sampled-data control such that closed-loop T–S fuzzy semi-Markov switching syste...

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Veröffentlicht in:Journal of the Franklin Institute 2020-11, Vol.357 (16), p.11265-11280
Hauptverfasser: Cheng, Jun, Zhang, Dian, Qi, Wenhai, Cao, Jinde, Shi, Kaibo
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Sprache:eng
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Zusammenfassung:The present draft investigates the finite-time stabilization of T–S fuzzy semi-Markov switching systems by using a coupling memory sampled-data control approach. The main study concerned is how to effectively design the sampled-data control such that closed-loop T–S fuzzy semi-Markov switching systems is finite-time boundedness. By utilizing a Bernoulli distributed sequence, a more general coupling memory fuzzy sampled-data control strategy that involving time delay effect is derived. By virtue of fuzzy-basis-dependent membership functions, an asynchronous approach is proposed for T–S fuzzy semi-Markov switching system. Moreover, the inverted pendulum model is presented to demonstrate the feasibility and validity of the proposed strategies.
ISSN:0016-0032
1879-2693
0016-0032
DOI:10.1016/j.jfranklin.2019.06.021