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Model Predictive Control Synthesis Approach of Electrode Regulator System for Electric Arc Furnace

机译:电弧炉电极调节器系统的模型预测控制综合方法%

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摘要

In electric are furnace smelting, electrode regulator system is a key link. A good electrode control algorithm will reduce energy consumption effectively and shorten smelting time greatly. The offline design online synthesis model predictive control algorithm is proposed for electrode regulator system with input and output constraints. On the offline computation, the continuum of terminal constraint sets will be constructed. On the online synthesis, the time-varying terminal constraint sets will be adopted and at least one free control variable will be introduced to solve the min-max optimization control problem. Then Lyapunov method will be adopted to analyze closed-loop system stability. Simulation and field trial results show that the proposed offline design online synthesis model predictive control method is effective.
机译:在电炉冶炼中,电极调节器系统是关键环节。良好的电极控制算法将有效降低能耗并大大缩短冶炼时间。针对具有输入和输出约束的电极调节器系统,提出了离线设计在线综合模型预测控制算法。在离线计算中,将构造终端约束集的连续体。在在线综合中,将采用时变终端约束集,并引入至少一个自由控制变量来解决最小-最大优化控制问题。然后采用李雅普诺夫方法分析闭环系统的稳定性。仿真和现场试验结果表明,所提出的离线设计在线综合模型预测控制方法是有效的。

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