DocumentCode
3475114
Title
Polynomial LQG regulator design for general system configurations
Author
Casavola, Alessandro ; Mosca, Edoardo
Author_Institution
Dipartimento di Sistemi e Inf., Firenze Univ., Italy
fYear
1991
fDate
11-13 Dec 1991
Firstpage
2307
Abstract
The authors provide a polynomial equation approach to the LQG (linear quadratic Gaussian) regulation problem for a general system configuration. The solution is given in terms of a left spectral factorization plus a pair of bilateral Diophantine equations. The resulting control design procedure is based on an innovations representation of the system. This can be obtained from a physical description by solving, via polynomial equations, a minimum mean-square error filtering problem. The use in cascade of the above two procedures allows one to generalize previous polynomial design results to general system configurations
Keywords
control system synthesis; optimal control; polynomials; LQG regulator; bilateral Diophantine equations; control system synthesis; general system configurations; left spectral factorization; linear quadratic Gaussian; minimum mean-square error filtering; optimal control; polynomial; Control design; Control systems; Dynamic programming; Equations; Filtering; Hydrogen; Polynomials; Regulators; Stochastic systems; Technological innovation;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 1991., Proceedings of the 30th IEEE Conference on
Conference_Location
Brighton
Print_ISBN
0-7803-0450-0
Type
conf
DOI
10.1109/CDC.1991.261576
Filename
261576
Link To Document