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Robust observer-based control designs for discrete nonlinear systems with disturbances
journal contribution
posted on 2018-11-01, 00:00 authored by Cuong Nguyen, Pubudu PathiranaPubudu Pathirana, Hieu TrinhHieu TrinhIn this paper, we consider the robust observer-based control design problem for discrete nonlinear systems with disturbances. A new approach is proposed to provide less conservative Linear Matrix Inequality control design conditions and enhance the robustness of control designs, where the observer and controller gains are computed independently. Both the one-sided Lipschitz condition and the Linear Parameter Varying approach, which are two well-known alternatives to the classical Lipschitz condition, are considered to address nonlinearities. Two numerical examples are presented to illustrate the superiorities of the new approach over the traditional H∞ approach as well as relevant works in the literature.
History
Journal
European journal of controlVolume
44Pagination
65 - 72Publisher
ElsevierLocation
Amsterdam, The NetherlandsPublisher DOI
ISSN
0947-3580Language
engPublication classification
C Journal article; C1 Refereed article in a scholarly journalCopyright notice
2018, European Control AssociationUsage metrics
Keywords
Science & TechnologyTechnologyAutomation & Control SystemsObserver-based controlRobust control designDisturbanceOne-sided Lipschitz conditionLinear Parameter Varying (LPV) systemLinear Matrix Inequality (LMI)SIDED LIPSCHITZ SYSTEMSSTATIC OUTPUT-FEEDBACKEXPONENTIAL OBSERVERLMI CONDITIONSSTABILIZATIONMechanical Engineering