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NONLINEAR PREDICTIVE CONTROL OF AN ELECTRIC ARC FURNACE

机译:电弧炉的非线性预测控制

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Electric arc furnaces are widely used in the steel industry for melting scrap. The highly energy intensive nature of these operations, coupled with their complexity and typically low level of automation, make them prime candidates for optimization. However, application of open-loop optimal control policies may result in suboptimal or infeasible operation in the presence of model uncertainty and unmeasured disturbances. This paper describes a strategy that combines a comprehensive dynamic model, rigorous optimization, and feedback within a nonlinear model predictive control framework. Key features are the direct use of an economic performance objective, a shrinking prediction horizon, and use of a nonlinear model. The components of the algorithm are described, and its performance illustrated through application to a case study.
机译:电弧炉广泛用于钢铁工业中的熔化废料。这些操作的高度能量密集的性质,加上其复杂性和通常的自动化水平,使其成为优化的主要候选。然而,在模型不确定性和未测量的干扰存在下可能导致开环最佳控制策略的应用可能导致次优或不可行的操作。本文介绍了一种策略,该策略结合了非线性模型预测控制框架内的全面动态模型,严格的优化和反馈。主要特征是直接使用经济性能目标,收缩预测地平线,以及使用非线性模型。描述了算法的组件,并通过应用于案例研究来说明其性能。

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