首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Suspension force analysis of six-pole radial-axial magnetic bearing for energy storage flywheel
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Suspension force analysis of six-pole radial-axial magnetic bearing for energy storage flywheel

机译:悬浮力分析六极径向轴磁轴承储能飞轮

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This paper proposes a six-pole radial-axial hybrid magnetic bearing (RAHMB) used in a flywheel system. The radial and axial bias fluxes are generated by one permanent magnet and the radial control coils are driven by a three-phase converter. So, it has the advantages of compact structure, low power consumption and simple driver. First, the work principle is introduced. Then, the mathematical model is built. The force-current characteristics with different eccentricities, the coupling between radial two degrees of freedom (DOF) and the coupling between radial and axial DOF are analyzed based on the analytical model. Finally, the analyses are validated by 3D finite element analysis in the Maxwell software. The results have shown that the coupling between radial and axial DOF is very small. However, the force-current curves of radial two DOFs turn out to be nonlinear and coupled with the increase of rotor eccentricity.
机译:本文提出了一种用于飞轮系统的六极径向轴向混合磁轴承(RAHMB)。 由一个永磁体产生径向和轴向偏置助熔剂,并且径向控制线圈由三相转换器驱动。 因此,它具有结构紧凑,功耗低,驾驶员的优点。 首先,介绍了工作原理。 然后,建立数学模型。 基于分析模型分析径向两度自由度(DOF)之间的耦合和径向和轴向DOF之间的耦合之间的力电流特性。 最后,通过Maxwell软件中的3D有限元分析验证了分析。 结果表明,径向和轴向DOF之间的耦合非常小。 然而,径向两种DOF的力 - 电流曲线变成非线性,并与转子偏心的增加相结合。

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