基于磁阻网络方法的径向主动磁轴承动力学模型

R. Pollanen, J. Nerg, O. Pyrhonen
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引用次数: 7

摘要

主动磁轴承(AMB)越来越多地应用于高速电机、压缩机、涡轮机械、主轴和储能飞轮。为了研究这些轴承的性能,特别是为它们开发可靠的控制,需要一个准确且计算效率高的轴承模型。在该模型中,必须考虑磁性材料饱和引起的磁非线性以及漏磁通径、交叉耦合效应和偏心转子的影响。电磁轴承的分析和设计主要基于二维有限元法。虽然这种方法可以精确地确定器件性能,但由于计算成本高,它对动态模拟没有吸引力。与二维有限元法相比,磁阻网络法(RNM)提供了令人满意的精度,但只需要一小部分计算。本文利用RNM建立了径向主动磁轴承的动态模型。
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Reluctance network method based dynamic model of radial active magnetic bearings
Active magnetic bearings (AMB) are increasingly used in high-speed electrical machines, compressors, turbomachinery, spindles and energy storage flywheels. In order to investigate the performance of these bearings, and especially to develop a reliable control for them, an accurate and computationally efficient bearing model is required. In the model the magnetic nonlinearities due to saturation of the magnetic materials as well as the impact of the leakage flux paths, cross-coupling effects and the eccentric rotor must be considered. Mainly, the analysis and design of AMB are based on two-dimensional (2-D) finite-element method (FEM). Although this method yields a precise determination of the device performance, it is not attractive for dynamic simulations due to its high computational cost. Alternatively, the reluctance network method (RNM) provides satisfactory accuracy compared to the 2-D FEM but with only a fraction of computations. In this paper, a dynamic model for a radial active magnetic bearing is developed using the RNM.
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