Feedback stabilization of fuzzy systems via linear matrix inequalities
Feedback stabilization of fuzzy systems via linear matrix inequalities
This paper considers the problem of designing robust feedback stabilization controller for a class of fuzzy systems. Based on piecewise Lyapunov functions, new design techniques for state feedback and output feedback controllers are proposed. The resultant controller is robust against measurement and modelling perturbations. The design conditions are non-conservative, and the design process is easy to construct by using commercially supported linear matrix inequalities software packages.
221-231
Ming, Feng
124509f7-e048-4ca7-8b3a-b710b4337478
J., Harris C.
c4fd3763-7b3f-4db1-9ca3-5501080f797a
2001
Ming, Feng
124509f7-e048-4ca7-8b3a-b710b4337478
J., Harris C.
c4fd3763-7b3f-4db1-9ca3-5501080f797a
Ming, Feng and J., Harris C.
(2001)
Feedback stabilization of fuzzy systems via linear matrix inequalities.
International Journal of System Science, 32 (2), .
Abstract
This paper considers the problem of designing robust feedback stabilization controller for a class of fuzzy systems. Based on piecewise Lyapunov functions, new design techniques for state feedback and output feedback controllers are proposed. The resultant controller is robust against measurement and modelling perturbations. The design conditions are non-conservative, and the design process is easy to construct by using commercially supported linear matrix inequalities software packages.
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Published date: 2001
Organisations:
Southampton Wireless Group
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Local EPrints ID: 252909
URI: http://eprints.soton.ac.uk/id/eprint/252909
PURE UUID: 4ba496bb-db6c-4562-aa30-5ae450db3447
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Date deposited: 20 Jun 2001
Last modified: 08 Jan 2022 05:42
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Contributors
Author:
Feng Ming
Author:
Harris C. J.
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