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A Self-Tuning PI Control System Design for the Flatness of Hot Strip in Finishing Mill Processes

机译:精轧机热轧带钢平整度的自校正PI控制系统设计

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摘要

A novel flatness sensing system which is called the Flatness Sensing Inter-stand Looper (FlatSIL) system is suggested and a self-tuning PI control system using the FlatSIL is designed for improving the flatness of hot strip in finishing mill processes. The FlatSIL system measures the tension along the direction of the strip width by using segmented rolls, and the tension profile is approximated through the tension of each segmented roll. The flatness control system is operated by using the tension profile. The proposed flatness control system as far as the tension profile-measuring device works for the full strip length during the strip rolling in finishing mills. The generalized minimum variance self-tuning (GMV S-T) PI control method is applied to control the flatness of hot strip which has a design parameter as weighting factor for updating the PI gains. Optimizing the design parameter in the GMV S-T PI controller, the Robbins-Monro algorithm is used. It is shown by the computer simulation and experiment that the proposed GMV S-T PI flatness control system has better performance than the fixed PI flatness control system.
机译:提出了一种新颖的平直度检测系统,称为平直度感应立式循环机(FlatSIL)系统,并设计了一种使用FlatSIL的自校正PI控制系统,以提高精轧机中热轧带钢的平整度。 FlatSIL系统通过使用分段辊测量沿带材宽度方向的张力,并且通过每个分段辊的张力来估算张力分布。平面度控制系统通过使用张力曲线进行操作。所建议的平直度控制系统,直到张力分布测量装置在精轧机中的带钢轧制过程中都能对整个带钢长度起作用。通用最小方差自整定(GMV S-T)PI控制方法用于控制热轧带钢的平直度,该热轧带钢的设计参数作为更新PI增益的加权因子。在GMV S-T PI控制器中优化设计参数,使用了Robbins-Monro算法。计算机仿真和实验表明,所提出的GMV S-T PI平面度控制系统具有比固定PI平面度控制系统更好的性能。

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