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The use of slightly asymmetrical windings for rotating electrical machines

机译:旋转电机使用稍微不对称的绕组

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摘要

Historically, asymmetrical windings in electrical machines have been rarely used and only for specified needs, because the adoption of symmetrical configurations has always been considered the only solution during the design stage of electrical machines. The aim of this work is to demonstrate with several examples that the use of slightly asymmetrical windings can be a reasonable choice and, in certain cases, a favorable option during the machine design stage, allowing the possibility of selecting a wider range of slot/pole number combinations, without affecting the performances of the machines. More in detail, an interior permanent magnet synchronous machine equipped with a symmetrical 3-phase winding has been considered as a reference structure. Then, this geometry has been adequately modified in other 3 models to equip asymmetrical windings on each of the modified structures. Afterwards, the performances have been compared in generated torque, magnetic forces, magnetomotive force harmonic content, cogging torque, and iron core losses. This comparison has led to promising results, obtaining in some cases even a reduction of power losses, cogging torque, and harmonic content.
机译:从历史上看,电机中的非对称绕组很少使用,仅用于特定需求,因为采用对称配置一直被认为是电机设计阶段的唯一解决方案。这项工作的目的是通过几个示例来证明使用稍微不对称的绕组是一个合理的选择,并且在某些情况下,在机器设计阶段是一个有利的选择,从而可以选择更大范围的槽/极数字组合,而不会影响机器的性能。更详细地,已经将配备有对称的三相绕组的内部永磁同步电机视为参考结构。然后,在其他3种模型中对该几何形状进行了适当的修改,以在每个修改的结构上配备不对称绕组。之后,在产生扭矩,磁力,磁通势谐波含量,齿槽转矩和铁芯损耗方面对性能进行了比较。这种比较带来了令人鼓舞的结果,在某些情况下甚至可以降低功率损耗,齿槽转矩和谐波含量。

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