Journal article
Control synthesis of uncertain Roesser-type discrete-time two-dimensional systems
Mathematical Problems in Engineering, Vol.2014(art no. 490174), pp.1-5
2014
Abstract
This paper is concerned with control synthesis of uncertain Roesser-type discrete-time two-dimensional (2D) systems. The mathematical model of the 2D system’s parameter uncertainty, which may appear typically in many actual environment, is modeled as a convex bounded uncertain domain. By using the Lyapunov stability theory, stabilization conditions is proposed in with the purpose of ensuring the robust asymptotical stability of the underlying closed-loop uncertain Roesser-type discrete-time 2D systems. Furthermore, the obtained result of this paper is formulated in the form of linear matrix inequalities (LMIs), which can be easily solved via standard numerical software. Finally, a numerical example is also provided to demonstrate the effectiveness of the proposed result.
Details
- Title
- Control synthesis of uncertain Roesser-type discrete-time two-dimensional systems
- Authors/Creators
- Y. Zhao (Author/Creator) - Shenyang Institute of EngineeringT. Zhang (Author/Creator) - Shenyang Institute of EngineeringD. Zhao (Author/Creator) - Shenyang Institute of EngineeringC. Wang (Author/Creator) - Shenyang Institute of EngineeringM. Li (Author/Creator) - Murdoch University
- Publication Details
- Mathematical Problems in Engineering, Vol.2014(art no. 490174), pp.1-5
- Publisher
- Hindawi Publishing Corporation
- Identifiers
- 991005543831107891
- Copyright
- © 2014 Yan Zhao et al.
- Murdoch Affiliation
- School of Engineering and Information Technology
- Language
- English
- Resource Type
- Journal article
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- Collaboration types
- Domestic collaboration
- International collaboration
- Citation topics
- 4 Electrical Engineering, Electronics & Computer Science
- 4.29 Automation & Control Systems
- 4.29.30 Robust Control Systems
- Web Of Science research areas
- Engineering, Multidisciplinary
- Mathematics, Interdisciplinary Applications
- ESI research areas
- Engineering