Switching robust control for ozone generators using the attractive ellipsoid method

T. Poznyak, I. Chairez, C. Perez, A. Poznyak

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7 Scopus citations

Abstract

This paper deals with a switching robust tracking feedback design for a corona-effect ozone generator. The generator is considered as a switched systems in the presence of bounded model uncertainties as well as external perturbations. Three nonlinear dynamic models under arbitrary switching mechanisms are considered assuming that a sample-switching times are known. The stabilization issue is achieved in the sense of a practical stability. We apply the newly elaborated (extended) version of the conventional attractive ellipsoid method (AEM) for this purpose. The same analysis was efficient to obtain the minimal size of region where the tracking error between the trajectories of the ozone generator and reference states converges. The numerically implementable sufficient conditions for the practical stability of systems are derived based on bilinear matrix inequalities (BMIs).

Original languageEnglish
Pages (from-to)1796-1806
Number of pages11
JournalISA Transactions
Volume53
Issue number6
DOIs
StatePublished - 1 Nov 2014

Keywords

  • Dwell-time
  • Ellipsoid method
  • Ozone generators
  • Practical stability
  • Switching systems

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