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Rotor end losses in multi-phase fractional-slot concentrated-winding permanent magnet synchronous machines

机译:多相分数槽集中绕组永磁同步电机的转子端部损耗

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Fractional-slot concentrated-windings (FSCW) have been gaining a lot of interest in Permanent Magnet (PM) synchronous machines. This is due to the advantages they provide including shorter non-overlapping end turns, higher efficiency, higher power density, higher slot fill factor, lower manufacturing cost, better flux-weakening capability resulting in wider constant power vs. speed range, and fault-tolerance. This paper focuses on eddy current losses in the rotor clamping rings. Losses in the non-magnetic shaft with the option of i) metallic, ii) nonmetallic, and iii) metallic with shielding laminations clamping rings are analyzed. The study is based on Finite Element Analysis (FEA). Desirable slot/pole combinations for different number of phases with both single- and double-layer windings are investigated. Experimental results for a 3-phase 12slot/10pole design will be presented to confirm that the losses in the rotor clamping rings can be very significant in case of FSCW and should not be overlooked during the design phase.
机译:分数槽集中绕组(FSCW)在永磁(PM)同步电机中引起了很多兴趣。这是由于它们提供的优势包括更短的非重叠端匝,更高的效率,更高的功率密度,更高的槽填充系数,更低的制造成本,更强的磁通减弱能力,从而导致恒定的功率与速度范围更宽,以及故障-宽容。本文重点介绍转子夹紧环中的涡流损耗。对非磁性轴的损耗进行了分析,可以选择i)金属,ii)非金属和iii)具有屏蔽叠片夹紧环的金属。该研究基于有限元分析(FEA)。研究了具有单层绕组和双层绕组的不同相数的理想槽/极组合。将给出三相12槽/ 10极设计的实验结果,以确认在FSCW情况下转子夹紧环中的损耗可能非常大,在设计阶段不应忽略。

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