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Decoupling Strategy and Dynamic Decoupling Model of Flatness Control in Cold Rolling Strip

机译:冷轧带钢平直度控制的解耦策略和动态解耦模型

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Taking a 1420 mm UCM six-high cold rolling mill as the research object, by calculating and analyzing the relative gain array of flatness adjustments, the flatness control strategy of independent control primary flatness, decoupling control quadratic and quartic flatness is proposed, which simplifies the complex three-loop decoupling to the two-loop decoupling, and facilitates the design of flatness control system. In order to overcome the shortcomings of the long response time and the process fluctuation of the static matrix decoupling control, based on the multi-input and multi-output decoupling control theory, a method and model for the whole process decoupling of quadratic and quartic flatness control loops is proposed by introducing dynamic decoupling matrix instead of static decoupling matrix. The simulation results show that the dynamic matrix decoupling control method can make the system adjust quickly and smoothly, and by controlling the primary, quadratic and quartic flatness, the cubic flatness can also be controlled effectively. This paper opens up a new way and method for developing a simple, practical and high performance flatness control system.
机译:以1420mm UCM六辊冷轧机为研究对象,通过计算和分析平整度调整的相对增益阵列,提出了独立控制一次平整度,解耦控制二次方和四方平直度的平整度控制策略,简化了平整度的控制。将复杂的三环解耦转换为两环解耦,并简化了平面度控制系统的设计。为了克服静态矩阵解耦控制的响应时间长和过程波动的缺点,基于多输入多输出解耦控制理论,提出了二次和四方平坦度全过程解耦的方法和模型。通过引入动态去耦矩阵代替静态去耦矩阵来提出控制回路。仿真结果表明,动态矩阵解耦控制方法可以使系统快速,平稳地进行调节,通过控制一次,二次和四次平面度,也可以有效地控制三次平面度。本文为开发一种简单,实用,高性能的平面度控制系统开辟了一条新途径。

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