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A Useful Control Model for Tandem Hot Metal Strip Rolling

机译:串联热轧带钢的有用控制模型

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The tandem hot metal strip rolling process is a highly complex nonlinear system that presents a difficult control challenge. This challenge is exacerbated by the hostile hot metal rolling environment, which precludes the location of sensors to measure variables that are important for control. In addition, the controller must have a structure that offers simplicity of tuning during commissioning by personnel who usually are unfamiliar with advanced process control techniques. Based on our previous work using a state-dependent Riccati equation technique for control of the tandem cold metal rolling process, it is considered that a similar method might also be useful for control of tandem hot strip rolling. For the hot rolling process, the development of a process model in a form that is suitable for control development is a significant and challenging task. This paper describes our work to expand on an initial portion of this model to develop a comprehensive nonlinear model of this process. Based on simulation results, it is determined that the complete model has the potential to be useful in the development of a viable nonlinear control method for significant improvement in the control of the tandem hot rolling process.
机译:串联热轧金属带材轧制过程是一个高度复杂的非线性系统,提出了困难的控制挑战。不利的铁水轧制环境加剧了这一挑战,这不利于传感器的位置,以测量对控制很重要的变量。此外,控制器必须具有一种结构,该结构可简化调试过程,使调试人员通常不熟悉高级过程控制技术。基于我们先前使用状态依赖的Riccati方程技术控制串联冷轧过程的工作,认为类似的方法也可能对串联热轧带钢的控制有用。对于热轧过程,以适合于控制开发的形式开发过程模型是一项艰巨而艰巨的任务。本文介绍了我们在扩展此模型的初始部分以开发此过程的综合非线性模型方面所做的工作。根据模拟结果,可以确定完整的模型具有开发一种可行的非线性控制方法的潜力,该方法可以显着改善串联热轧过程的控制。

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