Abstract

This paper considers robust performance analysis and robust H X control for a class of descriptor systems with time-varying and non-linear uncertainties. These uncertainties exist not only in the state, the control input and exogenous input, but also in the derivative of the state. A sufficient condition is firstly proposed to analyse the robust H X performance problem of the unforced systems. Feasible design procedures are presented to construct both the robust state feedback and output feedback controllers such that the closed-loop system has a unique, non-impulsive and asymptotically stable solution and satisfies a robust H X performance criterion. A numerical example is provided to show the efficiency of the approach.

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