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Demagnetization performance characteristics of flux switching permanent magnet machines

机译:磁通切换永磁电机的退磁性能特征

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This paper investigates the static demagnetization behavior of flux-switching permanent magnet (FSPM) machines during normal operating conditions. A combination of spatial harmonic analysis, magnetic equivalent circuits, and finite element (FE) analysis has been used to study the flux paths associated with the stator windings and their interaction with the permanent magnets (PMs) located on the stator. The MMF contributed by the stator currents under a variety of operating conditions combines constructively with the magnet MMF to augment the flux density in the PMs. This behavior has important ramifications for avoiding irreversible demagnetization caused by stator current MMFs impressed on the PMs. This analysis shows that, in contrast to many types of PM synchronous machines, FSPM machines do not produce demagnetizing MMFs during normal operation that threaten to demagnetize the magnets. This opens opportunities to consider the use of less expensive, lower energy-product materials for the PMs, including ferrite magnets or rare-earth materials with a lower concentration of dysprosium.
机译:本文研究了磁通转换永磁(FSPM)机器在正常工作条件下的静态消磁性能。空间谐波分析,磁等效电路和有限元(FE)分析的组合已用于研究与定子绕组相关的磁通路径及其与位于定子上的永磁体(PM)的相互作用。在各种运行条件下,由定子电流贡献的MMF与磁体MMF具有建设性的组合,以增加PM中的磁通密度。此行为具有重要的意义,可避免因施加在PM上的定子电流MMF引起的不可逆退磁。该分析表明,与许多类型的PM同步电机相反,FSPM电机在正常运行期间不会产生消磁的MMF,从而可能会使磁体消磁。这为考虑将更便宜,能耗更低的材料用于永磁电机提供了机会,包括铁氧体磁体或concentration含量较低的稀土材料。

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