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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Development of an optimal crown/shape level-2 control model for rolling mills with multiple control devices
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Development of an optimal crown/shape level-2 control model for rolling mills with multiple control devices

机译:开发具有多种控制装置的轧机的最佳凸度/形状等级2控制模型

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摘要

Three development stages of an online crown/shape control model are discussed. Each stage bears specific consideration and provides variable information for mill operations. Theoretical derivation of the first stage facilitates understanding of mill rolling behavior. Usage of the crown/shape model leads to the development of the linear crown control system. The second-stage development is to generate an offline simulation model which bridges the gap between theory and application. It is used to verify the theoretical model, to determine control gain factors, and even to examine stability of the control algorithm. The real-time process model is last when conducting mill setup calculations. It has to cope with uncertainties of measured devices, possible errors of the theoretical model, and real-world disturbance of mill operating conditions. Providing a stable, optimal, and accurate setup for the mill is its major responsibility. Statistical methods are used everywhere in these models from tuning to optimizing processes. This optimal linear crown/shape control system has been successfully applied to a production hot strip mill since 1992. The article describes development and application of this rolling model.
机译:讨论了在线牙冠/形状控制模型的三个开发阶段。每个阶段都需要特别考虑,并为工厂运行提供可变信息。第一阶段的理论推导有助于理解轧机的轧制行为。表冠/形状模型的使用导致了线性表冠控制系统的发展。第二阶段的开发是生成一个离线仿真模型,该模型可以弥合理论与应用之间的差距。它可用于验证理论模型,确定控制增益因子,甚至用于检查控制算法的稳定性。进行轧机设置计算时,实时过程模型是最后一个。它必须应对被测设备的不确定性,理论模型的可能误差以及工厂运行条件的实际干扰。为工厂提供稳定,最佳和准确的设置是其主要职责。从调整到优化过程,这些模型中到处都有统计方法。自1992年以来,这种最佳的线性凸度/形状控制系统已成功地应用于生产型热轧​​机。本文介绍了该轧制模型的开发和应用。

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