IEEE Transactions on Automatic Control, Vol.55, No.9, 2130-2135, 2010
Observer-Based Control of Discrete-Time LPV Systems With Uncertain Parameters
In this note, linear matrix inequality-based design conditions are presented for observer-based controllers that stabilize discrete-time linear parameter-varying systems in the situation where the parameters are not exactly known, but are only available with a finite accuracy. The presented framework allows to make tradeoffs between the admissible level of parameter uncertainty on the one hand and the transient performance on the other. In addition, the level of parameter uncertainty can be maximized while still guaranteeing closed-loop stability.
Keywords:Linear matrix inequalities (LMIs);linear parameter-varying (LPV) systems;output feedback and observers;robust control;separation principle