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Design of Permanent Magnet-Assisted Synchronous Reluctance Motors with Maximum Efficiency-Power Factor and Torque per Cost

机译:具有最高效率,功率因数和每单位成本转矩的永磁辅助同步磁阻电动机的设计

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In this paper, a permanent magnet-assisted synchronous reluctance motor (PM -assisted SynRM) is designed to be compared with a synchronous reluctance motor (SynRM) used in a blower of an air conditioner in terms of motor performance and material costs. The same stator structure and winding configuration of both motors are utilized. The motor performances are determined by using a design software tool coupled with a finite-element (FE) method. The material cost analysis is based on the material costs obtained from the supplier. The motor performances of the designed PM -assisted SynRM are better than those of the SynRM in terms of efficiency and power factor with a slight increase of the material cost. The insertion of permanent magnets in the innermost flux-barrier layer achieves the highest torque per cost. Also, the inserted permanent magnets in this position could reduce the risk of demaznetization.
机译:本文设计了一种永磁辅助同步磁阻电动机(PM辅助SynRM),与电动机鼓风机中使用的同步磁阻电动机(SynRM)在电动机性能和材料成本方面进行了比较。两种电动机都采用相同的定子结构和绕组配置。电机性能是通过使用设计软件工具结合有限元(FE)方法来确定的。物料成本分析基于从供应商处获得的物料成本。在效率和功率因数方面,设计的PM辅助SynRM的电动机性能优于SynRM的电动机性能,并且材料成本略有增加。在最里面的通量阻挡层中插入永磁体可实现最高的单位成本扭矩。同样,在此位置插入的永磁体可以降低退磁的风险。

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