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Mathematical Model of Electromechanical Systems of Wide-Strip Hot-Rolling Mill Continuous Train

机译:宽带热轧轧机机电系统的数学模型连续列车

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The paper considers the dynamic mathematical model of correlated electrical systems (automated electric drives and systems controlling performance data) of the continuous train of the wide-strip hot-rolling mill. The model has a correlated structure containing the models of systems for roll speed, automated strip gauge, tension and loop and electric drive speed mode control. Interrelation of the above facilities has a form of a dynamic model of strip in the inter-stand gap, models of generating torque, pressure and lag at rolling. Adequacy of the model to the issue under consideration was checked by comparing transient process modeling results with experimental ones. The most complex dynamic mode of strip gripping by rolls of three last stand of the continuous train was under investigation. It was established that percent parameter deviations ranged within ±15%; that is tolerable at modeling complex facilities. The developed mathematical model is applied for study of the control systems and algorithms elaborated for the 2,000 and 2,500 mm mills of OJSC Magnitogorsk Iron and Steel Works.
机译:本文考虑了宽带热轧机连续火车的相关电气系统(自动电动驱动器和系统控制性能数据)的动态数学模型。该模型具有相关结构,包含辊速,自动化条计,张力和环路和电驱动速度模式控制系统的型号。上述设施的相互关系在间隙间隙中具有动态模型的带状隙,产生扭矩的模型,滚动的扭矩,压力和滞后。通过将瞬态进程建模结果与实验结果进行比较来检查模型对正在考虑的问题的充分性。在连续列车的三个最后一站的卷上滚动最复杂的动态模式正在调查。建立百分比参数偏差范围内±15%;这在建模复杂的设施时可容许。开发的数学模型应用于对2,000和2,500毫米磨料的OJSC Magnitogorsk钢铁工程阐述的控制系统和算法研究。

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