Title :
Dynamic Output Feedback Control of Switched Linear Systems
Author :
Geromel, José C. ; Colaneri, Patrizio ; Bolzern, Paolo
Author_Institution :
Univ. of Campinas (UNICAMP), Campinas
fDate :
4/1/2008 12:00:00 AM
Abstract :
This paper is devoted to stability analysis and control design of switched linear systems in both continuous and discrete-time domains. A particular class of matrix inequalities, the so-called Lyapunov--Metzler inequalities, provides conditions for open-loop stability analysis and closed-loop switching control using state and output feedback. Switched linear systems are analyzed in a general framework by introducing a quadratic in the state cost determined from a series of impulse perturbations. Lower bounds on the cost associated with the optimal switching control strategy are derived from the determination of a feasible solution to the Hamilton--Jacobi--Bellman inequality. An upper bound on the optimal cost associated with a closed-loop stabilizing switching strategy is provided as well. The solution of the output feedback problem is based on the construction of a full-order linear switched filter whose state variable is used by the mechanism for the determination of the switching rule. Throughout, the theoretical results are illustrated by means of academic examples. A realistic practical application related to the optimal control of semiactive suspensions in road vehicles is reported.
Keywords :
Jacobian matrices; Lyapunov methods; closed loop systems; continuous systems; control system synthesis; discrete time systems; feedback; linear matrix inequalities; linear systems; open systems; optimal control; perturbation techniques; switched filters; time-varying systems; Hamilton-Jacobi-Bellman inequality; Lyapunov-Metzler inequalities; closed-loop optimal switching control; continuous domain; discrete-time domain; dynamic output feedback control; full-order linear switched filter; impulse perturbation; matrix inequalities; open-loop stability analysis; switched linear system control design; Control design; Control systems; Cost function; Linear feedback control systems; Linear systems; Open loop systems; Optimal control; Output feedback; Stability analysis; Vehicle dynamics; Linear matrix inequalities (LMIs); output feedback control; switched systems;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2008.919860