Design of speed disturbance compensation controller in the secondary cooling zones for billet

Ling Zu, Hongji Meng, Zhi Xie
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Abstract

Combined with the established three-dimensional dynamic solidification heat transfer model, a feed-forward controller under speed disturbance was designed for compensating secondary water. In order to improve the control quality of the surface temperature for billet, based on the determination of the transfer function matrix structures of the control channel and the disturbance channel, the heat transfer coefficient and the step changes of cast speed were employed as input activation, the surface temperatures of the casting billet were implied as the output response, and the step response curves and least square method were used to identify the transfer function. The simulation results shows that, the gain of the frequency response curves of the transfer function and the variation between the billet surface temperature and the target temperature are both reduced, and the quality of control is improved.
钢坯二冷区转速扰动补偿控制器的设计
结合已建立的三维动态凝固传热模型,设计了速度扰动下的前馈二次水补偿控制器。为了提高坯料表面温度的控制质量,在确定控制通道和扰动通道传递函数矩阵结构的基础上,以传热系数和浇注速度阶跃变化作为输入激活,以铸坯表面温度作为输出响应,利用阶跃响应曲线和最小二乘法辨识传递函数。仿真结果表明,传递函数频响曲线的增益和钢坯表面温度与目标温度之间的变化都得到了减小,控制质量得到了提高。
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