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Loop transfer recovery for general nonminimum phase discrete time systems. II - DesignThe authors consider the design of controllers for the recovery of target loop transfer function or sensitivity and complementary sensitivity functions for general nonminimum phase discrete time systems. The necessary design constraints and the available design freedom are reviewed. In view of the available freedom, possible specifications on the eigenstructure of the observer dynamic matrix are formulated. Three different types of controllers which are respectively based on prediction, current, and reduced-order estimators are considered. For each one of those controllers, three different design techniques are developed. The first one is an eigenstructure assignment scheme, while the other two are optimization-based designs. The eigenstructure assignment method yields a controller design which achieves any chosen recovery error matrix among a set of admissible recovery error matrices. On the other hand, one of the optimization-based design methods leads to a controller that achieves a recovery error matrix having the infimum H-infinity norm, while the other does the same except it achieves a recovery error matrix having the infimum H2 norm.
Document ID
19930038973
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Chen, Ben M.
(NASA Langley Research Center Hampton, VA, United States)
Saberi, Ali
(Washington State Univ. Pullman, United States)
Sannuti, Peddapullaiah
(Rutgers Univ. Piscataway, NJ, United States)
Shamash, Yacov
(Washington State Univ. Pullman, United States)
Date Acquired
August 16, 2013
Publication Date
January 1, 1992
Publication Information
Publication: In: 1992 American Control Conference, 11th, Chicago, IL, June 24-26, 1992, Proceedings. Vol. 4 (A93-22776 07-63)
Publisher: Institute of Electrical and Electronics Engineers
Subject Category
Cybernetics
Accession Number
93A22970
Funding Number(s)
CONTRACT_GRANT: NAG1-1210
Distribution Limits
Public
Copyright
Other

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