Title :
Robust L/sub 1/ model reduction for time-delay systems
Author :
Li, Yan-hui ; Zhou, Bin ; Gao, Hui-Jun ; Wang, Chang-Hong
Author_Institution :
Electr. & Inf. Eng. Coll., Daqing Pet. Inst., Heilongjiang, China
Abstract :
This paper investigates the problem of robust L 1, model reduction for linear continuous time-delay systems with parameter uncertainties. For a given stable system, our purpose is to construct reduced-order systems, such that the error system between the two models is asymptotically stable and has a guaranteed L 1 performance constraint. The L 1 performance criterion is first established for time-delay systems, furthermore, the sufficient conditions for the existence of admissible reduced-order models are obtained in terms of linear matrix inequalities (LMI) plus matrix inverse constraints. Since these obtained conditions are not expressed as strict LMIs, the cone complementarity linearization (CCL) algorithm is exploited to cast them into nonlinear minimization problems subject to LMI constraints, which can be readily solved by the standard numerical software. In addition, the development of delay-free reduced-order models is also presented. The efficiency of the proposed technique is demonstrated by a numerical example.
Keywords :
asymptotic stability; continuous time systems; delays; linear matrix inequalities; linear systems; linearisation techniques; minimisation; reduced order systems; robust control; L/sub 1/ performance constraint; LMI constraints; asymptotically stable; cone complementarity linearization algorithm; delay-free reduced-order models; linear continuous time-delay systems; linear matrix inequality; matrix inverse constraints; nonlinear minimization problems; parameter uncertainty; reduced-order systems; robust L/sub 1/ model reduction; standard numerical software; sufficient conditions; Approximation methods; Delay; Educational institutions; Inertial navigation; Linear matrix inequalities; Minimization methods; Petroleum; Reduced order systems; Robustness; Sufficient conditions; LMI; Model reduction; cone complementary linearization; peak-to-peak performance; time-delay systems;
Conference_Titel :
Machine Learning and Cybernetics, 2005. Proceedings of 2005 International Conference on
Conference_Location :
Guangzhou, China
Print_ISBN :
0-7803-9091-1
DOI :
10.1109/ICMLC.2005.1527161