DocumentCode :
2513525
Title :
MIMO system identification of a slab reheating furnace
Author :
Kusters, Arend ; Van Ditzhuijzen, Gustaaf A J M
Author_Institution :
Dept. of Rolling Mills & Autom., Hoogovens Tech. Services I&S B.V., Ijmuiden, Netherlands
fYear :
1994
fDate :
24-26 Aug 1994
Firstpage :
1557
Abstract :
This paper describes an application of a multivariable system identification procedure to estimate the parameters of a dynamic model for a walking beam type reheating furnace at the Hoogovens´ hot strip mill. The new control philosophy based on actual slab temperatures requires a different controller design by developing a black box model using multivariable system identification (MIMO). Practical knowledge of the furnace process and a priori knowledge of physical properties of heating processes are combined to choose a simple model structure, identical per tracking zone-i.e. a combination of a top and bottom burner zone. During several sessions, data from the process were collected and analysed. Using a multivariable parameter estimation procedure, the ARX method, the parameters per zone were estimated. Due to the mainly horizontal heat flow through the furnace, the structure could be chosen in such a way that by connecting the input/output of the individual zone models, a complete furnace model was obtained. This rather simple dynamic model proved to give a good representation of the temperature characteristics in the furnace
Keywords :
MIMO systems; furnaces; parameter estimation; rolling mills; steel industry; temperature control; ARX method; Hoogoven hot strip mill; MIMO system; black box model; burner zone; identification; multivariable system; parameter estimation; slab reheating furnace; slab temperatures; temperature control; walking beam type reheating furnace; Furnaces; Metals industry; Multivariable systems; Parameter estimation; Temperature control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Applications, 1994., Proceedings of the Third IEEE Conference on
Conference_Location :
Glasgow
Print_ISBN :
0-7803-1872-2
Type :
conf
DOI :
10.1109/CCA.1994.381484
Filename :
381484
Link To Document :
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