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Comparison of End Effect in Series and Parallel Hybrid Permanent-Magnet Variable-Flux Memory Machines

机译:串联和并联混合永磁变通量存储机的末端效应比较

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Hybrid permanent-magnet (PM) variable-flux memory (VFM) machines employ both high coercive force PM, i.e., the constant PM (CPM), and low coercive force PM, i.e., the variable PM (VPM). The high energy-product CPM guarantees the benefits of high torque density of the conventional PM machines, while the PM magnetization state of the VPM is flexibly regulated to match various operation requirements. In fact, the two kinds of PMs can be magnetically connected in either parallel or series, with which the machine characteristics are quite different. In this paper, based on the two-dimensional and three-dimensional finite-lement analyses, a pair of VFM machines with parallel and series connections, respectively, are investigated with specific reference to identify their difference in end effects. The comparison results show that the series hybrid PM VFM machine suffers more serious end leakage flux. The prototype machines are manufactured and tested to validate the analyses and predictions.
机译:混合永磁体(PM)可变磁通存储器(VFM)机器既使用高矫顽力PM,即恒定PM(CPM),又使用低矫顽力PM,即可变PM(VPM)。高能量积的CPM保证了传统PM机器具有高扭矩密度的优势,同时VPM的PM磁化状态可以灵活调节以适应各种运行要求。实际上,两种PM可以并联或串联磁连接,其机器特性完全不同。本文基于二维和三维有限元分析,分别研究了一对具有并联和串联连接的VFM机器,并专门参考了它们的最终效果差异。比较结果表明,该系列混合式永磁VFM机的端漏磁通更为严重。对原型机进行制造和测试以验证分析和预测。

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