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Two-degree-of-freedom robust speed controller for high-performance rolling mill drives

机译:两自由度鲁棒速度控制器,用于高性能轧机驱动器

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摘要

A scheme is presented for the speed control of rolling mill drives. The proposed speed controller is based on a two-degree-of-freedom (TDF) structure and uses an observer-based state feedback compensator for the major control loop. The control method yields a robust system with respect to system uncertainties and modeling errors and is very effective for vibration suppression. Experimental verification was carried out on a prototype rolling mill minimodel system. The experimental drive system has a three-mass-model structure (motor-gear-load) connected by low stiffness shafts. The mechanical resonances and the inertia ratios between the motor, gear, and load are comparable to those of an actual rolling mill system (resonant frequencies are at 17.4 Hz and 51.3 Hz). The proposed scheme was compared to the conventional PI controller and the performance of each scheme is presented. A high closed loop speed bandwidth was obtained with the proposed TDF speed controller.
机译:提出了用于轧机驱动器的速度控制的方案。所提出的速度控制器基于两自由度(TDF)结构,并对主要控制回路使用基于观察者的状态反馈补偿器。该控制方法针对系统不确定性和建模误差产生了一个鲁棒的系统,对于抑制振动非常有效。在原型轧机小型模型系统上进行了实验验证。实验驱动系统具有通过低刚度轴连接的三质量模型结构(电机齿轮负载)。电机,齿轮和负载之间的机械共振和惯性比与实际的轧机系统相当(共振频率为17.4 Hz和51.3 Hz)。将该方案与常规PI控制器进行了比较,并给出了每种方案的性能。提出的TDF速度控制器获得了较高的闭环速度带宽。

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