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Horizon-Varying Model Predictive Control for Accelerated and Controlled Cooling Process

机译:加速和控制冷却过程的水平变化模型预测控制

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摘要

In accelerated and controlled cooling (ACC) processes, the relationship between the plate velocity and the final temperature of plate point is complicated and implicitly expressed, with undetermined ending time of the plate cooling. It is difficult to obtain the optimal plate velocity to accurately control the final temperature. A novel control methodology is proposed to improve the accuracy of the final temperature. The technical targets are transformed first into several location-dependent temperatures to simplify the ACC process as a linear system. Then, a horizon-varying model predictive control algorithm is developed to obtain the optimal final temperature of the entire plate. The optimization horizon is estimated according to the plate length and the prediction of future input sequence in each control period. The experimental results show the effectiveness of the proposed method.
机译:在加速和控制冷却(ACC)过程中,板速度与板点最终温度之间的关系复杂且隐含地表示,板冷却的结束时间不确定。很难获得最佳的板速来精确控制最终温度。提出了一种新颖的控制方法,以提高最终温度的准确性。首先将技术指标转换为与位置有关的几个温度,以简化ACC过程作为线性系统。然后,开发了一种随时间变化的模型预测控制算法,以获得整个板块的最佳最终温度。根据板长和每个控制周期中对未来输入序列的预测来估计优化范围。实验结果表明了该方法的有效性。

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