基于压电作动器的冷轧轧辊间隙模型预测控制

Matthias Wehr, S. Stockert, D. Abel, G. Hirt
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引用次数: 5

摘要

在冷轧过程中,精确的辊缝调整是制造厚度精确的带钢所不可缺少的。提出了一种用于冷轧机辊缝调整的线性模型预测控制器。作为自动厚度控制的一部分,根据来料带材厚度进行精确的轧制间隙调整是至关重要的。该轮廓的测量值被缓冲,用零相位和基于长度的滤波器进行滤波,并转换为参考轨迹,以满足模型预测控制器的需要。该模型预测控制器既了解辊缝模型,又了解执行机构的动力学特性,能根据进料带材厚度扰动及时调整辊缝。采用压电致动器进行快速、精确的调整。给出了在工业规模冷轧机上取得的结果。
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Model Predictive Roll Gap Control in Cold Rolling with Piezoelectric Actuators
In cold rolling, a precise roll gap adjustment is indispensable for manufacturing strips with accurate thickness. This paper proposes a linear model predictive controller for roll gap adjustment in a cold rolling mill. As part of an automatic gauge control, the precise roll gap adjustment according to the incoming strip thickness profile is vital. The measurement of that profile is buffered, filtered with a zero-phase and length-based filter and converted to a reference trajectory to meet the needs of a model predictive controller. Knowing the roll gap model as well as the actuator dynamics, the model predictive controller can adjust the roll gap according to incoming strip thickness disturbances right on time. Piezoelectric actuators are used for fast and precise adjustment. Results obtained in a cold rolling mill of industrial scale are shown.
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