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On the Full Stand Modeling and Tension Control for the Hot Strip Finishing Mill with PID Structure

机译:PID结构热连轧精轧机的机架建模和张力控制研究

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We describe a looper controller design for a hot strip finishing mill in steel plants. The main function of the looper system is to balance the mass flow of the strip by accumulating material in the middle of the stands. Another function is to control the strip tension which influences the width of the strip. To ensure strip quality, it is very important to control the tension of the hot strip finishing mill. However, because there is a mutual interaction between the looper angle and the strip tension, it is difficult to control the looper system. Previous researches examined only the operation of a single stand. But it is not sufficient to examine the operation and effect of whole stands because the operation is wholly interdependent. In this paper, we present a full model of the hot strip finishing mill in order to more effectively control strip tension. We propose several control methods for the full-stand hot strip finishing mill, denoted as conventional PI, PI with cross gain, and coefficient diagram method (CDM) PID control. In the real plants, there are some problems by using higher order controllers such as LQ, LQG and H{sub}∞. By comparison, the PID controller is very simple and easy to apply to all real plants. To that end, we present our findings on PID controls and their potential use in the hot strip finishing mill.
机译:我们描述了一种用于钢厂热轧精轧机的活套控制器设计。活套系统的主要功能是通过在机架中间堆积物料来平衡带材的质量流量。另一个功能是控制影响带材宽度的带材张力。为了确保带钢质量,控制热轧带钢精轧机的张力非常重要。但是,由于弯针角度和带材张力之间存在相互作用,因此难以控制弯针系统。以前的研究仅检查单个机架的操作。但是仅仅检查整个展位的运作和效果是不够的,因为运作是完全相互依赖的。在本文中,我们介绍了热轧带钢精轧机的完整模型,以便更有效地控制带钢张力。我们为立式热轧带钢精轧机提出了几种控制方法,分别称为常规PI,具有交叉增益的PI和系数图方法(CDM)PID控制。在实际工厂中,通过使用高阶控制器(例如LQ,LQG和H {sub}∞)存在一些问题。相比之下,PID控制器非常简单,易于应用于所有实际工厂。为此,我们介绍了关于PID控制的发现以及它们在热轧精轧机中的潜在用途。

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