首页> 外文会议>ICMMA 2011;International Conference on Materials, Mechatronics and Automation >DYNAMIC DISTURBANCE SIMULATION OF MODAL CONTROL AND CONTROL MODEL OF TORSIONAL VIBRATION OF THE ROLLING MILL
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DYNAMIC DISTURBANCE SIMULATION OF MODAL CONTROL AND CONTROL MODEL OF TORSIONAL VIBRATION OF THE ROLLING MILL

机译:模态控制的动态扰动仿真及轧机扭转振动控制模型

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For suppressing torsional vibration on main driving system of the rolling mill, the paper studied modal control and control model of torsional vibration. Dynamic disturbance of the rolling mill main driving system were induced by small perturbation from torque fluctuation. Modal control analysis were investigated on include amplitude and phase response on reference change or load change, bode diagrams, and time domain simulations. Torque fluctuation reflects non-steady cyclical or quasi-cyclical characteristics on the torsional vibration system. Control model had been reconstructed from inversion of dynamic topology theory. The result of simulation showed that the established control model for suppressing torsional vibration was effectiveness. Feedback control experiment of nipping and throwing steel on the rolling mill's main driving system using reaction control tactic was proved it could be easy input and output for controling to suppressing vibration.
机译:为了抑制轧机主传动系统的扭振,研究了扭振的模态控制和控制模型。轧机主传动系统的动态扰动是由转矩波动引起的小扰动引起的。对模态控制分析进行了研究,包括对参考变化或负载变化的幅度和相位响应,波特图和时域仿真。转矩波动反映了扭转振动系统上的非稳态周期性或准周期性特性。控制模型是从动态拓扑理论的反演中重建的。仿真结果表明,所建立的抑制扭转振动的控制模型是有效的。运用反应控制策略在轧钢机主传动系统上进行夹钢和抛钢的反馈控制实验,证明其易于输入和输出以进行控制以抑制振动。

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