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H/sub ∞/ design with pole placement constraints: an LMI approach
IEEE Transactions on Automatic Control · 1996 · Vol. 41(3) · pp. 358–367
M. Chilali✉(Institut national de recherche en informatique et en automatique)P. Gahinet(Institut national de recherche en informatique et en automatique)
Abstract
This paper addresses the design of state- or output-feedback H/sub /spl infin// controllers that satisfy additional constraints on the closed-loop pole location. Sufficient conditions for feasibility are derived for a general class of convex regions of the complex plane. These conditions are expressed in terms of linear matrix inequalities (LMIs), and the authors' formulation is therefore numerically tractable via LMI optimization. In the state-feedback case, mixed H/sub 2//H/sub /spl infin// synthesis with regional pole placement is also discussed. Finally, the validity and applicability of this approach are illustrated by a benchmark example.
Stability and Control of Uncertain SystemsAdaptive Control of Nonlinear SystemsControl Systems and IdentificationFull state feedbackControl theory (sociology)Benchmark (surveying)Convex optimizationState (computer science)Linear matrix inequalityMathematicsClass (philosophy)Regular polygonOutput feedback
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References
Multivariable feedback design: Concepts for a classical/modern synthesis
IEEE Transactions on Automatic Control · 1981 · 2,204 citations
State-space solutions to standard H/sub 2/ and H/sub infinity / control problems
IEEE Transactions on Automatic Control · 1989 · 5,522 citations
All controllers for the general ∞ control problem: LMI existence conditions and state space formulas
Automatica · 1994 · 1,211 citations
Multiobjective output-feedback control via LMI optimization
IEEE Transactions on Automatic Control · 1997 · 2,420 citations
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