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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Applicability of Fractional Slot Axial Flux Permanent Magnet Synchronous Machines in the Field Weakening Region
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Applicability of Fractional Slot Axial Flux Permanent Magnet Synchronous Machines in the Field Weakening Region

机译:分数槽轴向磁通永磁同步电机在磁场弱化地区的适用性

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In this paper, a complete sensitivity analysis of the optimal parameters for the axial flux permanent magnet synchronous machines working in the field weakening region is implemented. Thanks to the presence of a parameterized accurate analytical model, it is possible to obtain all the required parameters of the machine. The two goals of the ideal design are to maximize the power density: Pdensity and the ratio of maximal to rated speed: nmaxr, which is an inductance related parameter keeping the efficiency at the target speed above 90%. Different slots/poles/phases combinations are studied to reveal the optimum combination for each phase. This paper has studied the effect of the ratio of number of stator slots to number of rotor poles on the Pdensity and nmaxr. It is shown that a low value of this parameter results in a better Pdensity and nmaxr. The effect of the outer diameter, and the inner to outer diameter ratio are studied with respect to the two design goals. In addition, a comparison between the finite and the theoretical infinite speed designs is implemented. A complete 3D finite element validation has proven the robustness of the analytical model.
机译:本文对弱磁场区域工作的轴向磁通永磁同步电机的最佳参数进行了完整的灵敏度分析。由于存在参数化的精确分析模型,因此可以获得机器所需的所有参数。理想设计的两个目标是最大程度地提高功率密度:密度和最大速度与额定速度之比:nmax / nr,这是一个与电感相关的参数,可将目标速度下的效率保持在90%以上。研究了不同的槽/极/相组合,以揭示每个相的最佳组合。本文研究了定子槽数与转子极数之比对Pdensity和nmax / nr的影响。结果表明,该参数的值越小,Pdensity和nmax / nr越好。相对于两个设计目标,研究了外径以及内外径比的影响。此外,还进行了有限速度设计和理论无限速度设计之间的比较。完整的3D有限元验证已证明了分析模型的鲁棒性。

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