Robust stabilization of linear discrete-time systems with time-varying input delay |
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Authors: | Antonio Gonzá lez |
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Affiliation: | University of Valenciennes and Hainaut-Cambresis, LAMIH (UMR CNRS 8201), Le Mont Houy, 59313 Valenciennes Cedex 9, France |
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Abstract: | This paper presents a sufficient condition to stabilize linear discrete-time systems with time-varying input delay and model uncertainties. The key idea consists of applying Artstein’s reduction method and the scaled bounded real lemma; the robust stabilization problem is cast as a set of linear matrix inequalities on a transformed delay-free system. Hence, a novel convex characterization of the problem, an alternative to bilinear matrix inequalities in prior literature, is provided. Predictor-based controllers and robust state-feedback stabilization are particular cases of the proposal. Furthermore, numerical examples show that this proposal may improve tolerance against delay variations when compared to other methods available in literature. |
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Keywords: | Stabilization of time-varying delay systems Scaled bounded real lemma Artstein&rsquo s model reduction Linear matrix inequality (LMI) |
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