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A Novel Dual Three-Phase Permanent Magnet Synchronous Motor With Asymmetric Stator Winding

机译:新型非对称定子绕组双三相永磁同步电动机

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摘要

Although three-phase permanent magnet (PM) motors are dominant in industry, multi-phase PM synchronous motors present higher torque-to-weight ratios, better efficiency, and low torque ripple compared with three-phase conventional PM motors. These features make fault-tolerant multi-phase PM motors become attractive for safety-critical applications. In this paper, a novel PM multi-phase motor design with a dual three-phase asymmetric stator winding is proposed. The winding structure of the proposed motor is unconventional due to selected slot–pole combinations. Therefore, an asymmetric winding is needed. The detailed finite-element analysis of the proposed motor and a performance comparison between the conventional integer-slot (72-slot/12-pole motor) with symmetric winding and the unconventional fractional-slot (78-slot/12-pole motor) PM motors with asymmetric windings is performed to see the benefits of the proposed motor. It was shown that the novel unconventional multi-phase PM motor has excellent torque quality and slightly higher torque density levels.
机译:尽管三相永磁(PM)电动机在工业中占主导地位,但与三相常规PM电动机相比,多相PM同步电动机具有更高的转矩重量比,更高的效率和更低的转矩脉动。这些特性使容错多相永磁电动机在安全关键型应用中变得有吸引力。本文提出了一种具有双三相不对称定子绕组的新型永磁多相电动机设计。由于选择了槽极组合,因此提出的电动机的绕组结构是非常规的。因此,需要不对称的绕组。拟议电动机的详细有限元分析以及具有对称绕组的常规整数槽(72槽/ 12极电动机)与非常规分数槽(78槽/ 12极电动机)PM的性能比较进行具有非对称绕组的电动机以查看所提出的电动机的好处。结果表明,新型非常规多相永磁电动机具有出色的转矩质量和略高的转矩密度水平。

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