Stability of networked stochastic multi-links coupled systems under try-once-discard protocol

This paper proposes a novel framework for analysing the stability of networked control systems (NCSs) by introducing, for the first time, a stochastic multi-links coupled system (MLCS) as the plant. The proposed architecture, termed the networked stochastic MLCS, is rigorously formulated as a stochastic hybrid system, enabling systematic stability analysis that jointly accounts for network-induced constraints, coupling topology, and stochastic disturbances. To characterise the admissible transmission behaviour, the maximum allowable transmission interval (MATI) and minimum allowable transmission interval (MIATI) are employed, while the reverse average dwell time (RADT) is incorporated to regulate the average transmission frequency, thereby balancing stability guarantees with communication efficiency. By combining graph theory methods with the Lyapunov method, stability criteria are established for the NCS under the Try-Once-Discard protocol. In particular, computable upper bounds for both MATI and RADT are derived in explicit form. The theoretical results are applied to a stochastic multi-links coupled oscillator system, and numerical simulations confirm the effectiveness and reduced conservatism of the proposed approach compared with existing methods.

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Publication Details

Journal
International Journal of Systems Science
Published
2026-09-15
DOI
https://doi.org/10.1080/00207721.2026.2730691
Primary Topic
Stability and Control of Uncertain Systems
Type
article
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Stability of networked stochastic multi-links coupled systems under try-once-discard protocol

Leszek Rutkowski, Wenxue Li, Wenhua Wang, Hui Zhou et al.
International Journal of Systems Science
Stability and Control of Uncertain Systems
article

Stability of networked stochastic multi-links coupled systems under try-once-discard protocol

Leszek Rutkowski, Wenxue Li, Wenhua Wang, Hui Zhou, Zhiteng Zheng
article en

Abstract

This paper proposes a novel framework for analysing the stability of networked control systems (NCSs) by introducing, for the first time, a stochastic multi-links coupled system (MLCS) as the plant. The proposed architecture, termed the networked stochastic MLCS, is rigorously formulated as a stochastic hybrid system, enabling systematic stability analysis that jointly accounts for network-induced constraints, coupling topology, and stochastic disturbances. To characterise the admissible transmission behaviour, the maximum allowable transmission interval (MATI) and minimum allowable transmission interval (MIATI) are employed, while the reverse average dwell time (RADT) is incorporated to regulate the average transmission frequency, thereby balancing stability guarantees with communication efficiency. By combining graph theory methods with the Lyapunov method, stability criteria are established for the NCS under the Try-Once-Discard protocol. In particular, computable upper bounds for both MATI and RADT are derived in explicit form. The theoretical results are applied to a stochastic multi-links coupled oscillator system, and numerical simulations confirm the effectiveness and reduced conservatism of the proposed approach compared with existing methods.

International Journal of Systems Science
Jagiellonian University (PL), Sana'a University (YE), Harbin Institute of Technology (CN), Systems Research Institute (PL), AGH University of Krakow (PL), Fuzhou University (CN), Polish Academy of Sciences (PL)
Openalex Percentile: Top 15%
Stability and Control of Uncertain Systems
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Stability of networked stochastic multi-links coupled systems under try-once-discard protocol — Leszek Rutkowski, Wenxue Li, et al. · International Journal of Systems Science (2026) | TGRS Research Map | TGRS