Optimal control of multiphase steel production

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Date
2019
Volume
9
Issue
1
Journal
Journal of mathematics in industry
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Book Title
Publisher
Berlin ; Heidelberg : Springer
Abstract

An optimal control problem for the production of multiphase steel is investigated that takes into account phase transformations in the steel slab. The state equations are a semilinear heat equation coupled with an ordinary differential equation, that describes the evolution of the steel microstructure. The time-dependent heat transfer coefficient serves as a control function. Necessary and sufficient optimality conditions for the control problem are derived. For the numerical solution of the control problem, a reduced sequential quadratic programming method with a primal-dual active set strategy is developed. The numerical results are presented for the optimal control of a cooling line in the production of hot-rolled Mo–Mn dual phase steel. © 2019, The Author(s).

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Citation
Hömberg, D., Krumbiegel, K., & Togobytska, N. (2019). Optimal control of multiphase steel production (Berlin ; Heidelberg : Springer). Berlin ; Heidelberg : Springer. https://doi.org//10.1186/s13362-019-0063-x
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CC BY 4.0 Unported