Stability analysis of a magnetically-levitated large flywheel using flexible rotor modeling

S. Yoo, C. Park, Byeong-Cheol Park, M. Noh
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Abstract

Stability analysis of the flywheel energy storage system supported by active magnetic bearings is studied in this paper. The system is designed to store 5kWh at maximum speed of 18,000 rpm and the gyroscopic coupling is strong that the dynamics of system changes with respect to the running speed. To analyze the stability of the system accurately, we derived mathematical models for the system components including the rotor, active magnetic bearings, amplifiers and sensors. The rotor model is based either on rigid-body dynamics or flexible rotor model using finite-element approach. We checked the stability of the system using the derived models and found that the model based rigid-body dynamics can be misleading, and an accurate rotor model using flexible rotor dynamics must be used in order to predict the stability properly.
基于柔性转子建模的大型磁悬浮飞轮稳定性分析
对主动磁轴承支撑飞轮储能系统的稳定性进行了研究。该系统设计为在最大转速为18000 rpm时存储5kWh,陀螺仪耦合强,系统动态随运行速度变化。为了准确地分析系统的稳定性,我们推导了包括转子、主动磁轴承、放大器和传感器在内的系统部件的数学模型。转子模型可基于刚体动力学模型,也可采用有限元方法建立柔性转子模型。利用导出的模型对系统的稳定性进行了验证,发现基于刚体动力学的模型可能会产生误导,为了正确预测系统的稳定性,必须使用基于柔性转子动力学的精确转子模型。
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