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A MPC for Start-up Phase Tension and Looper Control in Hot Strip Finishing Mills Using Continuation Approach

机译:使用延续方法的热带精轧机中的启动相位张力和循环控制的MPC

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TThis paper gives a design method for a model predictive control (MPC) approach based on a unified performance index throughout the start-up phase tension and looper control which consists of the non-contact and contact modes in order to suppress the deviation of the strip tension while the looper contacts with the strip as quickly as possible. We will formulate the control problem by using a MPC for a piecewise affine (PWA) system with the terminal condition and an unknown terminal time. However, in order to realize the feedback control using a receding horizon strategy, we have to solve nonlinear equations in an on-line manner as precisely as possible. Therefore, the paper gives a method using a continuation method for solving the nonlinear equations efficiently. The efficiency of the proposed method is shown through numerical simulations.
机译:TTHIS纸为模型预测控制(MPC)方法提供了一种基于整个启动相位张力和循环控制的统一性能指标的设计方法,该方法包括非接触和接触模式,以抑制条带的偏差张力,而循环件尽快与条带接触。我们将通过使用具有终端条件的分段仿射(PWA)系统的MPC和未知终端时间来制定控制问题。然而,为了实现使用后退地平线策略的反馈控制,我们必须尽可能地以在线方式求解非线性方程。因此,本文给出了一种方法,该方法使用延续方法有效地求解非线性方程。通过数值模拟显示所提出的方法的效率。

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