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A non-linear simulation model of an active magnetic bearings supported rotor system

机译:有源磁悬浮轴承转子系统的非线性仿真模型

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Nowadays active magnetic bearings (AMBs) are utilized in a wide range of applications including high-speed flywheel energy storage devices. This paper aims at reporting on the modeling and simulation of a flywheel energy storage system supported by AMBs. Firstly the non-linear AMB model is discussed that comprises the power amplifiers, displacement sensors, anti-aliasing filters and controller. The results of the non-linear AMB model are compared to conventional linear AMB models. Secondly the rotor model is discussed. The rotor model was implemented by means of the finite element method and the simulated results compared to a commercial rotor-dynamic software package. The rotor model is then integrated with the AMB models and the system is simulated under step disturbance inputs at the bearing positions as well as a run-up test to determine the unbalance response of the rotor.
机译:如今,主动磁轴承(AMB)广泛用于包括高速飞轮储能装置在内的各种应用中。本文旨在报告由AMB支持的飞轮储能系统的建模和仿真。首先讨论了非线性AMB模型,该模型包括功率放大器,位移传感器,抗混叠滤波器和控制器。将非线性AMB模型的结果与常规线性AMB模型进行比较。其次讨论了转子模型。通过有限元方法实现了转子模型,并将仿真结果与商用转子动力学软件包进行了比较。然后将转子模型与AMB模型集成在一起,并在轴承位置的阶跃扰动输入下进行系统仿真,并进行加速测试以确定转子的不平衡响应。

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