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Rotor Saliency Improved Structural Design For Cost Reduction in Single-phase Line-Start Permanent Magnet Motor

机译:转子显着性改善了单相线路启动永磁电机成本降低的结构设计

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This paper presents a study on motor material cost reduction by emphasizing rotor structural advantage in machine performance promotion of a single-phase line-start permanent magnet motor (LSPMM). The cost reduction of LSPMM is focused on saving high-price PM material in the LSPMM design. In the paper, a double-layer interior-PM (IPM) rotor structure is finally adopted to create higher rotor saliency ratio for improving reluctance torque generation to compensate decreased magnet torque due to PM usage reduction. That is, the hybrid torque with higher balance ratio of reluctance toque to magnet torque helps to lower the dependency o PM materials usage. With given torque and efficiency constrains, a series of double-layer rotor structures are built and optimized with gradually reduced amount of PM material. The torque and efficiency performances of LSPMM are predicted by using equivalent circuit method coupled with finite element analysis (FEA). The computed motor torque and efficiency performances are confirmed by comparing with test results.
机译:本文通过强调机械结构优势在单相线路启动永磁电动机(LSPMM)的机器性能升级中强调转子结构优势,提出了对电机材料成本降低的研究。 LSPMM的成本降低专注于节省LSPMM设计中的高价PM材料。在本文中,最终采用双层内部PM(IPM)转子结构以产生更高的转子显着率,以改善磁阻扭矩产生,以补偿由于PM使用率降低而降低的磁体扭矩。也就是说,具有较高平衡比的混合扭矩与磁体扭矩更高的磁力扭矩有助于降低PM材料的依赖性O.通过给定的扭矩和效率约束,通过逐渐减少的PM材料构建并优化了一系列双层转子结构。通过使用与有限元分析(FEA)耦合的等效电路方法来预测LSPMM的扭矩和效率性能。通过与测试结果进行比较,确认计算的电动机扭矩和效率性能。

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