Title :
Lyapunov functions for uncertain systems with applications to the stability of time varying systems
Author :
Dasgupta, Soura ; Chockalingam, Ganapathy ; Anderson, Brian D O ; Minyue Fe
Author_Institution :
Dept. of Electr. & Comput. Eng., Iowa Univ., Iowa City, IA, USA
fDate :
2/1/1994 12:00:00 AM
Abstract :
This paper has three contributions. The first involves polytopes of matrices whose characteristic polynomials also lie in a polytopic set (e.g. companion matrices). We show that this set is Hurwitz or Schur invariant if there exist multiaffinely parameterized positive definite, Lyapunov matrices that solve an augmented Lyapunov equation. The second result concerns uncertain transfer functions with denominator and numerator belonging to a polytopic set. We show all members of this set are strictly positive real if the Lyapunov matrices solving the equations featuring in the Kalman-Yakubovic-Popov Lemma are multiaffinely parameterized. Moreover, under an alternative characterization of the underlying polytopic sets, the Lyapunov matrices for both of these results admit affine parameterizations. Finally, we apply the Lyapunov equation results to derive stability conditions for a class of linear time varying systems
Keywords :
Lyapunov methods; linear systems; matrix algebra; polynomials; stability; stability criteria; time-varying systems; transfer functions; Hurwitz invariant set; Lyapunov functions; Schur invariant set; affine parameterizations; augmented Lyapunov equation; characteristic polynomials; linear time varying systems; matrices; polytopes; polytopic sets; stability conditions; uncertain systems; uncertain transfer functions; Cities and towns; Eigenvalues and eigenfunctions; Equations; Lyapunov method; Polynomials; Stability analysis; Symmetric matrices; Time varying systems; Transfer functions; Uncertain systems;
Journal_Title :
Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on