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首页> 外文期刊>Electric Power Applications, IET >Magnetic flux leakage modelling and optimisation of a CRAHMB for DC motor
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Magnetic flux leakage modelling and optimisation of a CRAHMB for DC motor

机译:直流电动机CRAHMB的漏磁建模与优化

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摘要

In this study, a combined radial-axial hybrid magnetic bearing (CRAHMB) with four poles is designed for high-speed brushless DC motor. Owing to the small distance of radial and axial unit of CRAHMB, the magnetic flux leakage (MFL) in both radial and axial directions is complex and serious. This study focuses on effective analytical model and optimisation of CRAHMB including flux leakage of permanent magnet circuit and control electromagnetic circuit. MFL analytical model was built based on equivalent magnetic circuit method. Under the condition of satisfying the maximum bearing capacity, the MFL coefficients were optimised with sequence quadratic programming method. A set of optimum parameters were suggested. MFL before and after optimisation are compared by finite element method. Finally, current stiffness calculated with optimised analytical model was verified on a DC motor experiment. The result shows the accuracies of both the axial and radial current stiffness are enhanced.
机译:在这项研究中,为高速无刷直流电动机设计了四极组合径向轴向混合电磁轴承(CRAHMB)。由于CRAHMB的径向和轴向单元之间的距离较小,因此沿径向和轴向的磁通泄漏(MFL)既复杂又严重。本研究着重于有效的CRAHMB分析模型和优化,包括永磁电路和控制电磁电路的漏磁。基于等效磁路法建立了MFL分析模型。在满足最大承载能力的条件下,采用序列二次规划法对MFL系数进行了优化。建议了一组最佳参数。通过有限元方法比较优化前后的MFL。最后,在直流电动机实验中验证了使用优化分析模型计算出的电流刚度。结果表明,轴向和径向电流刚度的精度都得到了提高。

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