Delay-Dependent Nonfragile H ∞ Observer-Based Control for Neutral Systems with Time Delays in the State and Control Input
J. D. Chen ()
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J. D. Chen: National Kinmen Institute of Technology
Journal of Optimization Theory and Applications, 2009, vol. 141, issue 2, No 13, 445-460
Abstract:
Abstract The problem of the delay-dependent nonfragile H ∞ observer-based control for a class of neutral systems with time delays is investigated. The additive gain variations under consideration are contained in both the controller gain and the observer gain. Novel delay-dependent criteria are derived to guarantee the stability of the nonfragile H ∞ observer-based control system using the Lyapunov function approach combined with linear matrix inequalities (LMI). The controller and observer gains are given from the LMI feasible solutions. Based on the result of this paper, the constraint of matrix equality is not necessary for designing a nonfragile H ∞ observer-based control. The computer software Matlab can be applied to solve the proposed problems. Finally, a numerical example is given illustrating the design of the nonfragile H ∞ observer-based control.
Keywords: Nonfragile H ∞ observer-based control; Neutral systems with time delays; Delay-dependent criteria; LMI feasible solutions (search for similar items in EconPapers)
Date: 2009
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DOI: 10.1007/s10957-008-9392-4
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