DocumentCode :
695830
Title :
Finite model order optimal input design for minimum variance control
Author :
Martensson, Jonas ; Rojas, Cristian R. ; Hjalmarsson, Hakan
Author_Institution :
ACCESS Linnaeus Center, KTH - R. Inst. of Technol., Stockholm, Sweden
fYear :
2009
fDate :
23-26 Aug. 2009
Firstpage :
454
Lastpage :
459
Abstract :
It is well known that if we intend to use a minimum variance controller to stabilize a minimum phase plant (with exactly one time delay), which is designed based on a model obtained from an identification experiment, the best experiment which can be performed on the system to determine such a model (subject to output power constraints, or for some specific model structures) is to use the true minimum variance controller. This result has been derived under several circumstances, first using asymptotic (in model order) variance expressions but also more recently for ARMAX models of finite order. In this paper we re-approach this problem by using a recently developed geometric approach to variance analysis, which is non asymptotic in model order, with which we generalize some of the previous results established in the literature. We also believe the new derivations to be more transparent than earlier contributions.
Keywords :
control system synthesis; delays; optimal control; stability; ARMAX models; asymptotic variance expressions; finite model order optimal input design; identification experiment; minimum phase plant stabilization; model order; power constraints; specific model structures; time delay; true minimum variance controller; Aerospace electronics; Covariance matrices; Delay effects; Signal to noise ratio; Upper bound; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (ECC), 2009 European
Conference_Location :
Budapest
Print_ISBN :
978-3-9524173-9-3
Type :
conf
Filename :
7074444
Link To Document :
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