Title :
Robust pole placement in LMI regions
Author :
Chilali, Mahmoud ; Gahinet, Pascal ; Apkarian, Pierre
Author_Institution :
Inst. Nat. de Recherche en Inf. et Autom., Le Chesnay, France
Abstract :
This paper discusses analysis and synthesis techniques for robust pole placement in linear matrix inequality (LMI) regions, a class of convex regions of the complex plane that embraces most practically useful stability regions. The focus is on linear systems with static uncertainty on the state matrix. For this class of uncertain systems, the notion of quadratic stability and the related robustness analysis tests are generalized to arbitrary LMI regions. The resulting tests for robust pole clustering are all numerically tractable since they involve solving LMIs, and cover both unstructured and parameter uncertainty. These analysis results are then applied to the synthesis of dynamic output-feedback controllers that robustly assign the closed-loop poles in a prescribed LMI region. With some conservatism, this problem is again tractable via LMI optimization. In addition, robust pole placement can be combined with other control objectives such as H2 or H ∞ performance to capture realistic sets of design specifications. Physically-motivated examples demonstrate the effectiveness of the approaches for robust analysis and synthesis
Keywords :
closed loop systems; control system synthesis; feedback; linear systems; matrix algebra; pole assignment; stability; uncertain systems; closed-loop systems; linear matrix inequality; linear systems; output-feedback; pole clustering; pole placement; robustness; stability regions; uncertain systems; Linear matrix inequalities; Linear systems; Robust control; Robust stability; Robustness; Stability analysis; State feedback; System testing; Uncertain systems; Uncertainty;
Conference_Titel :
Decision and Control, 1997., Proceedings of the 36th IEEE Conference on
Conference_Location :
San Diego, CA
Print_ISBN :
0-7803-4187-2
DOI :
10.1109/CDC.1997.657634