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Demagnetization investigation of a partitioned rotor flux switching machine with hybrid permanent magnet

机译:带有混合永磁体的分区转子磁链开关机的退磁研究

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摘要

In this paper, the partitioned rotor flux switching permanent magnet machine with ferrite permanent magnet is proposed. By the adoption of the partitioned rotor configuration, the stator flux leakage is eliminated and the permanent magnet utilization is improved. The ferrite permanent magnet machine often suffers from irreversible demagnetization due to the inherent relatively low coercivity of ferrite permanent magnet. To mitigate the machine irreversible demagnetization risk, an improved partitioned rotor flux switching permanent magnet machine with hybrid permanent magnet topology is also proposed. Two little pieces of rare-earth permanent magnet are installed at the corners of ferrite permanent magnet, thus forming the hybrid permanent magnet topology. And the demagnetization mechanisms of both machines are clarified by the magnetic equivalent circuit method, which prove that the rare-earth permanent magnet offer magnetic protection function for the ferrite permanent magnet. Furthermore, by the 2-D finite element analysis, the demagnetization characteristics and the electromagnetic performances of the two machines are quantitively assessed, revealing that the demagnetization risk is reduced significantly. Both theoretical analysis and simulation results verify that the improved machine can not only maintain low-cost design, but also possess enhanced demagnetization withstand capability and competitive electromagnetic performances as expected.
机译:本文提出了一种具有铁氧体永磁体的分区转子磁通切换永磁电机。通过采用分隔的转子配置,消除了定子磁通泄漏,提高了永磁体的利用率。由于铁氧体永磁体固有的相对较低的矫顽力,因此铁氧体永磁电机经常遭受不可逆的退磁。为了减轻电机不可逆退磁的风险,还提出了一种具有混合永磁拓扑的改进的分区转子磁通切换永磁电机。在铁氧体永磁体的角部安装了两块稀土永磁体,从而形成了混合永磁体拓扑。并且通过磁等效电路法阐明了两台机器的退磁机理,证明稀土永磁体对铁氧体永磁体具有磁保护功能。此外,通过二维有限元分析,定量评估了两台机器的退磁特性和电磁性能,表明退磁风险显着降低。理论分析和仿真结果均证明,改进后的机器不仅可以保持低成本的设计,而且具有预期的增强的抗退磁能力和具有竞争力的电磁性能。

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