l(1)-Gain Controller Design for 2-D Markov Jump Positive Systems With Directional Delays

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초록

This article is concerned with the stochastic stability and l(1)-gain control of two-dimensional (2-D) positive Markov jump systems (PMJSs) with directional delays based on the Roesser model. First, necessary and sufficient conditions (NSCs) for the stochastic stability of the addressed system are established by constructing a deterministic ``equivalent'' system and applying a stochastic copositive Lyapunov function. This reveals that the stochastic stability of 2-D PMJSs with delays is affected by the size of directional delays, the transition matrix, and system matrices. Second, the exact l(1)-gain index is calculated and NSCs in the form of linear programming (LP) are established for the addressed system. Systematic methods for the l(1)-gain controller design are proposed so that the closed-loop system (CLS) is positive and stochastically stable and has an optimal l(1)-gain performance, which is achieved using an iterative algorithm and an analytical calculation method for a single-input case. Finally, the potency and accuracy of the theoretical results are verified using two examples.

키워드

DelaysMarkov processesStability criteriaAsymptotic stabilityTwo dimensional displaysSwitchesProcess controlController designdirectional delaysl&#x2081-gain performancestochastic stabilitytwo-dimensional (2-D) Markov systemsSLIDING MODE CONTROLLINEAR-SYSTEMSSTOCHASTIC STABILITYL(1)-INDUCED NORMFAULT-DETECTIONSTATE-DELAYSTIME-DELAYSSTABILIZATIONPERFORMANCE
제목
l(1)-Gain Controller Design for 2-D Markov Jump Positive Systems With Directional Delays
저자
Duan, ZhaoxiaAhn, Choon KiXiang, ZhengrongGhous, Imran
DOI
10.1109/TSMC.2022.3161582
발행일
2022-12
유형
Article
저널명
IEEE Transactions on Systems, Man, and Cybernetics: Systems
52
12
페이지
7600 ~ 7613