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Tandem hot metal rolling mill control = using practical advanced methods /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Tandem hot metal rolling mill control/ by John Pittner, Marwan A. Simaan.
Reminder of title:
using practical advanced methods /
Author:
Pittner, John.
other author:
Simaan, Marwan A.
Published:
Cham :Springer International Publishing : : 2024.,
Description:
xv, 191 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
Subject:
Rolling-mill machinery - Automatic control. -
Online resource:
https://doi.org/10.1007/978-3-031-58082-6
ISBN:
9783031580826
Tandem hot metal rolling mill control = using practical advanced methods /
Pittner, John.
Tandem hot metal rolling mill control
using practical advanced methods /[electronic resource] :by John Pittner, Marwan A. Simaan. - Cham :Springer International Publishing :2024. - xv, 191 p. :ill. (some col.), digital ;24 cm. - Advances in industrial control,2193-1577. - Advances in industrial control..
1. Introduction -- 2. Process Model -- 3. Present Control Methods -- 4. The New Advanced Control Method -- 5. Variable Speed Drives for Tandem Hot Mill Application.
Tandem Hot Metal Rolling Mill Control is a response to the significant control engineering challenges posed by the nature and circumstances of the hot metal strip rolling process. The process is large, complex, multivariable and nonlinear with significant disturbances and subject to multiple situationally dependent time delays all of which are exacerbated by the demands of an ever-more-competitive marketing environment for its product. The book provides innovative solutions not available with previously existing methods of control. It introduces new advanced control methods, including a nonlinear control method based on an advanced state-dependent Riccati equation technique coupled with virtual rolling to improve performance during various regimes of mill operation. The book begins with a brief history of metal rolling and an overview of the tandem hot metal rolling process. It then discusses process models, including physical-system and state-space equations, and control methods currently being used in tandem rolling. The exposition of the new advanced control method uses figures and simulations to facilitate thorough understanding of the methods and their applicability in the real world. The final chapter concludes with a brief discussion of variable-speed drives as typically used in modern installations. Although sufficient mathematical treatment is provided to support the development of novel concepts, the presentation is not highly mathematical, making the text readily understandable and useful to a variety of readers in both academic and practical engineering milieux.
ISBN: 9783031580826
Standard No.: 10.1007/978-3-031-58082-6doiSubjects--Topical Terms:
783566
Rolling-mill machinery
--Automatic control.
LC Class. No.: TS340 / .P58 2024
Dewey Class. No.: 671.32
Tandem hot metal rolling mill control = using practical advanced methods /
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1. Introduction -- 2. Process Model -- 3. Present Control Methods -- 4. The New Advanced Control Method -- 5. Variable Speed Drives for Tandem Hot Mill Application.
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Tandem Hot Metal Rolling Mill Control is a response to the significant control engineering challenges posed by the nature and circumstances of the hot metal strip rolling process. The process is large, complex, multivariable and nonlinear with significant disturbances and subject to multiple situationally dependent time delays all of which are exacerbated by the demands of an ever-more-competitive marketing environment for its product. The book provides innovative solutions not available with previously existing methods of control. It introduces new advanced control methods, including a nonlinear control method based on an advanced state-dependent Riccati equation technique coupled with virtual rolling to improve performance during various regimes of mill operation. The book begins with a brief history of metal rolling and an overview of the tandem hot metal rolling process. It then discusses process models, including physical-system and state-space equations, and control methods currently being used in tandem rolling. The exposition of the new advanced control method uses figures and simulations to facilitate thorough understanding of the methods and their applicability in the real world. The final chapter concludes with a brief discussion of variable-speed drives as typically used in modern installations. Although sufficient mathematical treatment is provided to support the development of novel concepts, the presentation is not highly mathematical, making the text readily understandable and useful to a variety of readers in both academic and practical engineering milieux.
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Intelligent Technologies and Robotics (SpringerNature-42732)
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