Compound control for speed and tension multivariable coupling system of reversible cold strip mill

To weaken the nonlinear coupling influence among the variables in the speed and tension system of reversible cold strip mill, a compound control (CC) strategy based on invariance principle was proposed. Firstly, invariance principle was used to realize static decoupling between the speed and tension...

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Published inJournal of Central South University Vol. 22; no. 2; pp. 529 - 538
Main Authors Fang, Yi-ming, Liu, Le, Li, Jian-xiong, Chang, Ru
Format Journal Article
LanguageEnglish
Published Heidelberg Central South University 01.02.2015
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ISSN2095-2899
2227-5223
DOI10.1007/s11771-015-2552-4

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Abstract To weaken the nonlinear coupling influence among the variables in the speed and tension system of reversible cold strip mill, a compound control (CC) strategy based on invariance principle was proposed. Firstly, invariance principle was used to realize static decoupling between the speed and tension of reversible cold strip mill. Then, considering the influence caused by the time variation of steel coil radius and rotational inertia of the left and right coilers, as well as the uncertainties, a CC strategy that is composed of extended state observer (ESO) and global sliding mode control (GSMC) with backstepping adaptive was proposed, which further realized dynamic decoupling and coordination control for the speed and tension system. Theoretical analysis shows that the resulting closed-loop system is global bounded stable. Finally, the simulation was carried out on the speed and tension system of a 1422 mm reversible cold strip mill by using the actual data, and through the comparison of the other control strategies, validity of the proposed CC strategy was shown by the results.
AbstractList To weaken the nonlinear coupling influence among the variables in the speed and tension system of reversible cold strip mill, a compound control (CC) strategy based on invariance principle was proposed. Firstly, invariance principle was used to realize static decoupling between the speed and tension of reversible cold strip mill. Then, considering the influence caused by the time variation of steel coil radius and rotational inertia of the left and right coilers, as well as the uncertainties, a CC strategy that is composed of extended state observer (ESO) and global sliding mode control (GSMC) with backstepping adaptive was proposed, which further realized dynamic decoupling and coordination control for the speed and tension system. Theoretical analysis shows that the resulting closed-loop system is global bounded stable. Finally, the simulation was carried out on the speed and tension system of a 1422 mm reversible cold strip mill by using the actual data, and through the comparison of the other control strategies, validity of the proposed CC strategy was shown by the results.
Author Fang, Yi-ming
Chang, Ru
Li, Jian-xiong
Liu, Le
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Cites_doi 10.1016/S1000-9361(09)60211-9
10.1109/87.664192
10.1016/S1006-706X(12)60146-0
10.4028/www.scientific.net/AMM.368-370.470
10.1016/j.jmatprotec.2008.10.035
10.1109/87.987065
10.1109/28.833782
10.4028/www.scientific.net/AMM.394.470
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Issue 2
Keywords reversible cold strip mill
extended state observer
decoupling
invariance principle
compound control
speed and tension system
global sliding mode control
Language English
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Snippet To weaken the nonlinear coupling influence among the variables in the speed and tension system of reversible cold strip mill, a compound control (CC) strategy...
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Metallic Materials
Title Compound control for speed and tension multivariable coupling system of reversible cold strip mill
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