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Fractional-Slot Permanent Magnet Brushless Machines with Low Space Harmonic Contents

机译:低空间谐波含量的分数槽永磁无刷电机

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The paper is concerned with new winding configurations and associated pole-slot combinations for permanent magnet (PM) machines that lead to improved performance and facilitate cost reduction. Compared to the current state of the art, the salient feature of the proposed designs is elimination and/or reduction of undesirable space harmonics which result from the existing fractional-slot per phase per pole permanent magnet machines with concentric windings. This will bring the benefits of significant reduction of the eddy current loss in the rotor permanent magnets, short end-winding and hence reduced copper loss and copper usage, increased power/torque density, reduction in manufacturing cost, and improved energy efficiency. Although the proposed technique is primarily aimed for brushless permanent magnet machines, it is also applicable to synchronous reluctance machines, induction machines and synchronous wound field machines. The proposed technique is applied to the design of an interior mounted permanent magnet machine for electric vehicle traction applications, and demonstrated by the measurements on a prototype machine.
机译:本文关注的是永磁(PM)机器的新绕组配置和相关的极槽组合,这些组合可改善性能并降低成本。与现有技术相比,所提出的设计的显着特征是消除和/或减少了不希望的空间谐波,该不期望的空间谐波是由具有同心绕组的每极每极永磁电机的现有分数槽产生的。这将带来以下好处:大大减少转子永磁体中的涡流损耗,缩短端部绕组并因此减少铜损耗和铜用量,提高功率/转矩密度,降低制造成本并提高能源效率。尽管提出的技术主要针对无刷永磁电机,但它也适用于同步磁阻电机,感应电机和同步绕线电机。拟议的技术应用于电动汽车牵引应用的内置式永磁电机的设计,并通过原型机上的测量得到证明。

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