DEVELOPING THE METHOD OF OPTIMAL SETTINGS OF A NONLINEAR IMPEDANCE CONTROLLER OF ARC STEEL MELTING FURNACE

A.A. Nikolaev, P.G. Tulupov, V.S. Ivekeev, S.S. Ryzhevol
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Abstract

The paper proposes the methodology for choosing the optimal coefficients of a nonlinear impedance controller as part of the control system for the electric mode of an electric arc furnace (ESF). The focus of the study was an arc steel-smelting furnace of shaft type ShP-125 (85 MVA) with an ARCOS electric mode control system and a nonlinear PI impedance controller. The paper considers in detail the stages of practical application of the proposed methodology. It describes a mathematical model of the ARCOS control system with a non-linear PI impedance controller. The model was used to evaluate the current control system settings and conclude that it needs to be optimized. The developed methodology allowed for determining the new values of the coefficients of the nonlinear PI controller. They ensure the operation of the impedance control loop which is close to the technical optimum. The paper presents the results of applying the improved parameters of the ARCOS control system and the calculation of the technical effect. The scientifically based conclusions prove the effectiveness of the proposed approaches.
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研究了电弧炼钢炉非线性阻抗控制器的优化设置方法
本文提出了电弧炉电模式控制系统中非线性阻抗控制器最优系数的选择方法。以85 MVA轴式ShP-125电弧炼钢炉为研究对象,采用ARCOS电模控制系统和非线性PI阻抗控制器。本文详细考虑了所提出的方法的实际应用阶段。描述了非线性PI阻抗控制器ARCOS控制系统的数学模型。该模型用于评估当前控制系统的设置,并得出需要优化的结论。所开发的方法允许确定非线性PI控制器系数的新值。它们确保阻抗控制回路的运行接近技术最佳。本文介绍了改进后的ARCOS控制系统参数的应用结果及技术效果的计算。科学的结论证明了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
10 weeks
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