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Cited 3 time in webofscience Cited 4 time in scopus
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Modeling and vertical torsional coupling vibration control of the rolling mill with full state constraints

Authors
Qian, ChengXu, JiajunHua, ChangchunPark, Kyoung-Su
Issue Date
Jun-2022
Publisher
WILEY
Keywords
adaptive control; nonlinear modeling; state constraints; vertical torsional coupling vibration; vibration suppression
Citation
INTERNATIONAL JOURNAL OF ROBUST AND NONLINEAR CONTROL, v.32, no.9, pp.5501 - 5519
Journal Title
INTERNATIONAL JOURNAL OF ROBUST AND NONLINEAR CONTROL
Volume
32
Number
9
Start Page
5501
End Page
5519
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/84380
DOI
10.1002/rnc.6098
ISSN
1049-8923
Abstract
This article establishes a mechanical-electrical-hydraulic vertical torsional coupling vibration mathematical model, and investigates its vibration suppression control strategy with time varying full state constraints for the rolling mill vertical torsional coupling vibration system. Firstly, the mechanical-electrical-hydraulic vertical torsional coupling vibration nonlinear model is developed using dynamic theory, which takes into account nonlinear damping, nonlinear rolling force and the coupling relationship between the vertical vibration system and the torsional vibration system. Then, nonlinear constraint transformation functions and coordinate transformations are implemented to remove the feasibility condition in handling the full state constraints problem, and neural networks are used to approximate unknown nonlinear functions. Furthermore, the vibration suppression control algorithm of the mechanical-electrical-hydraulic vertical torsional coupling system is designed with the specific sequence backstepping method and dynamic surface control technique, which can resolve the problem of nesting in the controller design process. Finally, the effective of the proposed method on vibration suppression is verified by the simulation.
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Park, Kyoung Su
Engineering (기계·스마트·산업공학부(기계공학전공))
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