DocumentCode
1367941
Title
Parameter identification for uncertain linear systems with partial state measurements under an H∞ criterion
Author
Pan, Zigang ; Tamer Basar
Author_Institution
Dept. of Electr. & Comput. Eng., California Univ., Santa Barbara, CA, USA
Volume
41
Issue
9
fYear
1996
fDate
9/1/1996 12:00:00 AM
Firstpage
1295
Lastpage
1311
Abstract
This paper addresses the worst-case parameter identification problem for uncertain single-input/single-output (SISO) and multi-input/multi-output (MIMO) linear systems under partial state measurements and derives worst-case identifiers using the cost-to-come function method. In the SISO case, the worst-case identifier obtained subsumes the Kreisselmeier observer as part of its structure with parameters set at some optimal values. Its structure is different from the common least-squares (LS) identifier, however, in the sense that there is additional dynamics for the state estimate, coupled with the dynamics of the parameter estimate in a nontrivial way. In the MIMO case as well, the worst-case identifier has additional dynamics for the state estimate which do not appear in the conventional LS-based schemes. Also for both SISO and MIMO problems, approximate identifiers are obtained which are numerically much better conditioned when the disturbances in the measurement equations are “small”. The theoretical results are then illustrated on an extensive numerical example to demonstrate the effectiveness of the identification schemes developed
Keywords
MIMO systems; linear systems; parameter estimation; state estimation; uncertain systems; H∞ criterion; Kreisselmeier observer; approximate identifiers; cost-to-come function method; multi-input/multi-output linear systems; partial state measurements; uncertain linear systems; uncertain single-input/single-output systems; worst-case parameter identification; Control systems; Equations; Kalman filters; Linear systems; MIMO; Noise measurement; Nonlinear filters; Observers; Parameter estimation; State estimation;
fLanguage
English
Journal_Title
Automatic Control, IEEE Transactions on
Publisher
ieee
ISSN
0018-9286
Type
jour
DOI
10.1109/9.536499
Filename
536499
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