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An Initial Model for Control of a Tandem Hot Metal Strip Rolling Process

机译:热连轧带钢轧制过程控制的初始模型

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The tandem rolling of hot metal strip presents a significant control challenge because of nonlinearities and process complexities. The challenge is heightened by an extremely hostile environment that precludes the location of sensors to measure process variables that are important for control. In addition, it is essential that the controller structure allows for a high degree of physical intuition in the design process and provides for simplicity of tuning during commissioning. Based on our previous work using a state-dependent Riccati equation (SDRE) technique for control of the tandem cold rolling process, it is considered that a similar method might also be useful as a basis for the development of a control technique for tandem hot strip rolling. For the hot rolling process, the development of a process model in a form that is suitable for use with a SDRE-based method is a significant and challenging task. This paper describes our work to develop an initial model for this process. Based on simulation results, it is determined that this initial model has the potential to be the basis for the development of the complete nonlinear model that can be used for development of a viable control method which offers the likelihood for improvement in the control of the hot metal rolling process.
机译:铁水带材的串联轧制由于非线性和工艺复杂性,对控制提出了重大挑战。极端敌对的环境使传感器的位置难以测量,因为传感器无法测量对控制很重要的过程变量。此外,至关重要的是,控制器结构应在设计过程中提供高度的物理直觉,并在调试过程中简化调试过程。基于我们先前使用状态依赖的Riccati方程(SDRE)技术控制串联冷轧过程的工作,认为类似的方法也可能作为开发串联热轧带钢控制技术的基础有用滚动。对于热轧过程,以适合基于SDRE的方法使用形式开发过程模型是一项艰巨而艰巨的任务。本文介绍了我们为该过程开发初始模型的工作。根据仿真结果,可以确定该初始模型有可能成为开发完整非线性模型的基础,该模型可以用于开发可行的控制方法,从而为改善热控制提供了可能性金属轧制过程。

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