Finite-time H∞ control of switched Markov jump systems under edge-dependent transition probability

For a specific class of switched Markov jump systems, this study develops a finite-time H ∞ control strategy with edge-dependent transition probability. The system is comprised of deterministic switching signals as well as Markov processes, where the transition probabilities depend not only on the current system mode but also on the switching edge information. By virtue of the edge-dependent transition probability and the mode-dependent average dwell time strategy, the finite-time boundedness is ensured, and the finite-time H ∞ control problem is solved under designed controller. The controller gains are subsequently obtained. The simulation results of a numerical example, a RLC circuit system, and a 2-Degree-of-Freedom helicopter system verify effectiveness of the proposed method.

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Publication Details

Journal
Applied Mathematics and Computation
Published
2026-09-25
DOI
https://doi.org/10.1016/j.amc.2026.130326
Primary Topic
Stability and Control of Uncertain Systems
Type
article
Field-Weighted Citation Impact
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Finite-time H∞ control of switched Markov jump systems under edge-dependent transition probability

Linlin Hou, Yingjie Zhao, Haibin Sun, Dong Yang
Applied Mathematics and Computation
Stability and Control of Uncertain Systems
article

Finite-time H∞ control of switched Markov jump systems under edge-dependent transition probability

Linlin Hou, Yingjie Zhao, Haibin Sun, Dong Yang
article en

Abstract

For a specific class of switched Markov jump systems, this study develops a finite-time H ∞ control strategy with edge-dependent transition probability. The system is comprised of deterministic switching signals as well as Markov processes, where the transition probabilities depend not only on the current system mode but also on the switching edge information. By virtue of the edge-dependent transition probability and the mode-dependent average dwell time strategy, the finite-time boundedness is ensured, and the finite-time H ∞ control problem is solved under designed controller. The controller gains are subsequently obtained. The simulation results of a numerical example, a RLC circuit system, and a 2-Degree-of-Freedom helicopter system verify effectiveness of the proposed method.

Applied Mathematics and ComputationVol. 535
Qufu Normal University (CN)
Peace, Justice and strong institutions
Openalex Percentile: Top 16%
Stability and Control of Uncertain Systems
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