Stability and Stabilization of 2D Singular Systems: A Strict LMI Approach

This paper deals with the stability and stabilization of 2D singular systems described by a Roesser model. The proposed results are presented in terms of a strict linear matrix inequality (LMI), which makes possible to elaborate a new sufficient admissibility condition. The design of a state feedbac...

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Veröffentlicht in:Circuits, systems, and signal processing systems, and signal processing, 2019-07, Vol.38 (7), p.3041-3057
Hauptverfasser: Elloumi, Marwa, Ghamgui, Mariem, Mehdi, Driss, Tadeo, Fernando, Chaabane, Mohamed
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper deals with the stability and stabilization of 2D singular systems described by a Roesser model. The proposed results are presented in terms of a strict linear matrix inequality (LMI), which makes possible to elaborate a new sufficient admissibility condition. The design of a state feedback controller is then treated using this condition, deriving a sufficient condition for the admissibility of the closed-loop system. A numerical example is given at the end of the paper, which illustrates the effectiveness of the proposed methodology.
ISSN:0278-081X
1531-5878
DOI:10.1007/s00034-018-01019-4