Title :
Dilated LMI based LPV control and its application to an aero-engine
Author :
Chughtai, Saulat S. ; Wang, H.
Author_Institution :
Control Syst. Centre, Manchester Univ., Manchester, UK
Abstract :
This paper proposes a new set of linear matrix inequalities (LMIs) to design dynamic gain scheduled controller for linear systems with time-varying parameters. The proposed LMIs do not involve product terms of the plant state matrices and the Lyapunov matrix. It has been shown that these LMIs can further be extended to accommodate a parameter dependent Lyapunov (PDL) function in an H8 norm based minimization framework. It is found that the LMIs, for the PDL case, are easier to solve if system A-matrix has an affine structure. Moreover, the linear parameter varying (LPV) controller obtained by the proposed LMIs do not require a derivative feedback of the scheduling parameter and hence is more practically implementable than the one obtained by existing proposed LMIs. The proposed method is then applied to a Rolls Royce Spey engine using a mixed sensitivity approach. The non-linear closed loop simulations show that all the required performance objectives are satisfied.
Keywords :
Lyapunov methods; aerospace engines; closed loop systems; control system synthesis; gain control; linear matrix inequalities; A-matrix; LPV controller; Lyapunov matrix; PDL function; Rolls Royce Spey engine; aeroengine; affine structure; derivative feedback; dilated LMI based LPV control; dynamic gain scheduled controller design; linear matrix inequalities; linear parameter varying; linear systems; mixed sensitivity; nonlinear closed loop simulations; parameter dependent Lyapunov; plant state matrices; time-varying parameters; Control systems; Engines; Fuels; Linear matrix inequalities; Lyapunov methods; Sensitivity; Symmetric matrices;
Conference_Titel :
Control Conference (ECC), 2007 European
Conference_Location :
Kos
Print_ISBN :
978-3-9524173-8-6