Dynamic Analysis of Flexible Rotor Suspended by Active Magnetic Bearings With LQR Controller

Yi-xin Su, Yanhui Ma, Qian Shi, Suyuan Yu
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Abstract

Dynamic characteristics of active magnetic bearing (AMB)-flexible rotor system are closely related to control law. To analyze dynamic characteristics of flexible rotor suspended by AMBs with linear quadratic regulation (LQR) controller, a simple and effective method based on numerical calculation of unbalanced response is proposed in this article. The model of flexible rotor is established based upon Euler-Bernoulli beam theory and Lagrange’s equation. Disc on the rotor and its Gyro effect are taken into account. LQR controller based on error and its derivative is developed to control electromagnetic force of AMB at each degree of freedom (DOF) in real time. Under the unbalanced exciting force, the steady-state response and transient response in time domain of each node of flexible rotor at 0–4000 rad/s are calculated numerically. The critical speeds of rotor are obtained by identification method quickly and easily.
基于LQR控制器的主动磁轴承悬浮柔性转子动力学分析
主动磁轴承-柔性转子系统的动态特性与控制律密切相关。为了分析采用线性二次调节(LQR)控制器的磁悬浮柔性转子的动态特性,提出了一种简单有效的基于不平衡响应数值计算的方法。基于欧拉-伯努利梁理论和拉格朗日方程建立了柔性转子模型。考虑了圆盘对转子的影响及其陀螺效应。提出了一种基于误差及其导数的LQR控制器,用于实时控制机械臂各自由度电磁力。在非平衡激振力作用下,数值计算了柔性转子各节点在0 ~ 4000 rad/s时的稳态响应和时域瞬态响应。该方法可快速、简便地获得转子的临界转速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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