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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Online Gain Tuning Method Of Roll Force Agc In Hot Strip Mills By Using Fuzzy Logic
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Online Gain Tuning Method Of Roll Force Agc In Hot Strip Mills By Using Fuzzy Logic

机译:基于模糊逻辑的热轧机轧制力在线增益增益调整方法

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摘要

Gains of a roll force AGC (Automatic Gain Controller) have been calculated at the first locked-on-time by FSU (Finishing-mill Set-Up model) in hot strip mills and usually these values are not adjusted during the operating time. Consequently, this conventional scheme cannot cope with the continuous variation of system parameters and circumstance, though the gains can be changed manually with the aid of experts to prevent a serious situation such as inferior mass production. Hence, partially uncontrolled variation still remains on delivery thickness. This paper discusses an effective online algorithm which can adjust the gains of the existing control system by considering the effect of time varying variables. This algorithm improves the performance of the system without additional cost and guarantees the stability of the conventional system. Specifically, this paper reveals the major factors that cause the variation of strip and explores the relationship between AGC gains and the effects of those factors through the analysis of thickness signal which occupy different frequency bands. The proposed tuning algorithm is based on the above relationship and realized through ANFIS (Adaptive-Neuro-based Fuzzy Interface System) which is a very useful method because its fuzzy logics reflect the experiences of professionals about the uncertainty and the nonlinearity of the system. The effectiveness of the algorithm is shown by several simulations which are carried out by using the field data of POSCO corporation (South Korea).
机译:在热轧机中,FSU(精轧机安装模型)在首次锁定时就已经计算出轧制力AGC(自动增益控制器)的增益,通常这些值在运行时间内不会调整。因此,尽管可以在专家的帮助下手动改变增益以防止严重的情况,例如劣质的生产,但是这种常规方案不能应对系统参数和环境的连续变化。因此,部分不受控的变化仍然保留在输送厚度上。本文讨论了一种有效的在线算法,该算法可以通过考虑时变变量的影响来调整现有控制系统的增益。该算法在不增加成本的情况下提高了系统性能,并保证了常规系统的稳定性。具体而言,本文通过分析占据不同频带的厚度信号,揭示了引起带材变化的主要因素,并探讨了AGC增益与这些因素的影响之间的关系。提出的整定算法基于上述关系,并通过ANFIS(基于自适应神经网络的模糊接口系统)实现,这是一种非常有用的方法,因为其模糊逻辑反映了专业人员对系统不确定性和非线性的经验。该算法的有效性通过使用POSCO公司(韩国)的现场数据进行的几次仿真得到了证明。

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