Journal article
Robust stability criteria of Roesser-type discrete-time two-dimensional systems with parameter uncertainties
Abstract and Applied Analysis, Vol.2014, pp.1-6
2014
Abstract
This paper is concerned with robust stability analysis of uncertain Roesser-type discrete-time two-dimensional (2D) systems. In particular, the underlying parameter uncertainties of system parameter matrices are assumed to belong to a convex bounded uncertain domain, which usually is named as the so-called polytopic uncertainty and appears typically in most practical systems. Robust stability criteria are proposed for verifying the robust asymptotical stability of the related uncertain Roesser-type discrete-time 2D systems in terms of linear matrix inequalities. Indeed, a parameter-dependent Lyapunov function is applied in the proof of our main result and thus the obtained robust stability criteria are less conservative than the existing ones. Finally, the effectiveness and applicability of the proposed approach are demonstrated by means of some numerical experiments.
Details
- Title
- Robust stability criteria of Roesser-type discrete-time two-dimensional systems with parameter uncertainties
- Authors/Creators
- Y. Zhao (Author/Creator)T. Zhang (Author/Creator)D. Zhao (Author/Creator)F. You (Author/Creator)M. Li (Author/Creator)
- Publication Details
- Abstract and Applied Analysis, Vol.2014, pp.1-6
- Publisher
- Hindawi Publishing Corporation
- Identifiers
- 991005540269707891
- 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
- Mathematics
- Mathematics, Applied
- ESI research areas
- Mathematics