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首页> 外文期刊>Metallurgist >Optimization and Innovative Modification of a Model Used to Determine the Amount of Adjustment of an Actuator for Flatness Control
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Optimization and Innovative Modification of a Model Used to Determine the Amount of Adjustment of an Actuator for Flatness Control

机译:用于确定平坦度控制的执行器调整量的模型的优化和创新修改

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摘要

Calculation of the amount of adjustment of an actuator is an important step in flatness control during the cold rolling process. It has a direct effect on the precision with which flatness of strip is controlled. In this paper, an optimal evaluation function for evaluating actuator adjustment is defined based on the efficiency of the actuator and is solved by using a feasible-directions algorithm. This approach can not only determine the amount of adjustment that is optimal but also eliminates the problems associated with irreversible iteration in the traditional method. The software package Visual Studio is used to perform graphical modeling and a function block generator is used to create an optimum function block. The proposed model has been tested on a five-stand tandem cold-rolling mill. The results show that the flatness control deviation is reduced from 9% to 5%, which demonstrates that the model is highly effective.
机译:致动器调节量的计算是冷轧过程中平坦度控制的重要步骤。 它直接影响条带平整度的精度。 在本文中,基于致动器的效率来定义用于评估执行器调整的最佳评估功能,并通过使用可行方向算法来解决。 这种方法不仅可以确定最佳的调整量,而且还可以消除传统方法中与不可逆迭代相关的问题。 软件包Visual Studio用于执行图形建模,功能块生成器用于创建最佳功能块。 所提出的模型已经在五架串联冷轧机上进行了测试。 结果表明,平坦度控制偏差从9%降至5%,这表明该模型具有高效。

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