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First Insights on the Electromagnetic Design of Axial-Flux Synchronous-Reluctance Maschine

机译:关于轴向磁通同步磁阻Maschine电磁设计的首要见解

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This paper presents a new topology of synchronous reluctance machine, based on the axial-flux concept (AF-SynRM). As case study, an electric drive used in a cooling fan module for vehicles is considered, but the applications field can be much wider. At first, the existing/reference radial flux Interior Permanent Magnet Synchronous Motor (IPMSM) has been modeled by means of Finite Element Method (FEM) to check the electromagnetic behavior, (i.e. flux linkage and torque). The next step consists in the design and optimization of a concentrated winding, magnet-free, radial flux Synchronous Reluctance Machine (SynRM). Following that, the newly proposed AF-SynRM is benchmarked against the both magnet-based and magnet-free radial flux (RF) counterparts. As the reference machines are employing a fractional slot concentrated winding, the same is done for the AF-SynRM, even though superior behavior is expected when considering its distributed variant. Results obtained during the 3D FE-based optimization are reported highlighting the main challenges needed to be addressed (e.g. higher torque ripple and q-axis inductance). Being a motor topology that is rather complex regarding its manufacturability, possible directions and their problems are discussed.
机译:本文介绍了基于轴向通量概念(AF-Synrm)的同步磁阻机的新拓扑。如案例研究,考虑了用于车辆的冷却风扇模块中使用的电动驱动,但应用领域可以更宽。首先,现有/参考径向磁通内部永磁同步电动机(IPMSM)通过有限元方法(FEM)来建模,以检查电磁行为,(即通量连杆和扭矩)。下一步包括集中绕组,无磁,径向通量同步磁阻机(SYNRM)的设计和优化。在此之后,新提出的AF-SYNRM与磁铁基和无磁径向通量(RF)对应物的基准测试。由于参考机器采用分数槽浓缩绕组,即使在考虑其分布式变体时预期优异的行为,也可以为AF-Synrm完成相同的。据报道,在3D Fe基优化期间获得的结果突出了所需的主要挑战(例如,扭矩纹波和Q轴电感)。作为其讨论其可制造性,可能的方向及其问题,是一种相当复杂的电机拓扑。

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