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Gain-scheduled control via parameter-dependent Lyapunov functions

Author

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  • Sunan Chumalee
  • James F. Whidborne

Abstract

Synthesising a gain-scheduled output feedback H∞ controller via parameter-dependent Lyapunov functions for linear parameter-varying (LPV) plant models involves solving an infinite number of linear matrix inequalities (LMIs). In practice, for affine LPV models, a finite number of LMIs can be achieved using convexifying techniques. This paper proposes an alternative approach to achieve a finite number of LMIs. By simple manipulations on the bounded real lemma inequality, a symmetric matrix polytope inequality can be formed. Hence, the LMIs need only to be evaluated at all vertices of such a symmetric matrix polytope. In addition, a construction technique of the intermediate controller variables is also proposed as an affine matrix-valued function in the polytopic coordinates of the scheduled parameters. Computational results on a numerical example using the approach were compared with those from a multi-convexity approach in order to demonstrate the impacts of the approach on parameter-dependent Lyapunov-based stability and performance analysis. Furthermore, numerical simulation results show the effectiveness of these proposed techniques.

Suggested Citation

  • Sunan Chumalee & James F. Whidborne, 2015. "Gain-scheduled control via parameter-dependent Lyapunov functions," International Journal of Systems Science, Taylor & Francis Journals, vol. 46(1), pages 125-138, January.
  • Handle: RePEc:taf:tsysxx:v:46:y:2015:i:1:p:125-138
    DOI: 10.1080/00207721.2013.775386
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