4.7 Article

Delay-dependent Robust H∞ and L2-L∞ filtering for a class of uncertain nonlinear time-delay systems

Journal

IEEE TRANSACTIONS ON AUTOMATIC CONTROL
Volume 48, Issue 9, Pages 1661-1666

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TAC.2003.817012

Keywords

filter design; linear matrix inequality (LMI); time-delay systems

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This note presents delay-dependent robust H-infinity and L-2 -L-infinity filter designs for a class of nonlinear systems with multiple time-varying delays in the state and parameter uncertainties residing in a polytope. The nonlinearities are assumed to satisfy global Lipschitz conditions. Attention is focused on the design of robust full-order and reduced-order filters guaranteeing a prescribed noise attenuation level in an H-infinity or L-2-L-infinity sense. The admissible filters can be obtained from the solution of convex optimization problems in terms of linear matrix inequalities, which can be solved via efficient interior-point algorithms.

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