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The application of improved parameter-adaptive algorithm based on U-model in AGC control system of cold rolling mill

机译:基于U形模型的改进参数 - 自适应算法在冷轧机AGC控制系统中的应用

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An improved parameter-adaptive controller based on different status in the rolling process is proposed for rolling force prediction of single stand cold rolling mill to satisfy industrial requirements. Based on the U-model in complex automatic gauge control (AGC) methods, the improved parameter-adaptive controller with parameter variation is carried out in rolling force model. Quality problem caused by varying plastic parameter is solved with the new algorithm. The simulation results verify the superiority of the proposed algorithm in comparison with an existing LMS self-tuning controller. From the field experiment of 400mm high precision experimental cold rolling mill, the predictive accuracy has been improved with the improved parameter-adaptive algorithm, and satisfies the requirements for production of ultra-thin, high-strength grain oriented silicon steel.
机译:提出了一种基于轧制工艺中不同状态的改进的参数自适应控制器,用于轧制力预测单支冷轧机的轧制力预测,以满足工业要求。 基于复杂自动规格控制(AGC)方法中的U形模型,在滚动力模型中进行了具有参数变化的改进的参数自适应控制器。 采用新算法解决了各种塑料参数引起的质量问题。 仿真结果与现有LMS自调谐控制器相比,验证了所提出的算法的优越性。 从400mm高精度实验性冷轧机的现场实验,采用改进的参数 - 自适应算法提高了预测精度,满足了生产超薄,高强度晶粒硅钢的生产要求。

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