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Effect of AC Losses on Temperature Rise Distribution in Concentrated Windings of Permanent Magnet Synchronous Machines with Parallel Strands

机译:AC损耗对平行股线浓缩绕组浓缩绕组温度升高分布的影响

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This paper investigates the effect of AC losses on the steady-state temperature rise distribution in concentrated windings of permanent magnet machines with parallel strands by combined electromagnetic and thermal finite-element analyses. The copper losses are decomposed into DC loss, strand-level AC loss and bundle-level AC loss. It shows that the AC losses can significantly increase the winding temperature and influence the temperature distribution in the slot. The bundle-level loss becomes dominant at high speed but has a small influence on the location of the hot spot in the slot, while the strand-level loss could pull the hot spot to the slot opening. A 12-slot 10-pole FSCW permanent magnet machine was prototyped and measured to validate the effect of AC losses on the winding temperature rise. The obtained results could be helpful for designers to build a detailed lumped-parameter thermal model of the winding or for the manufactures where to insert a thermal sensor to capture the real hot spot in the slot.
机译:本文研究了通过组合电磁和热有限元分析对平行股线浓度绕组稳态温度升高分布对稳态温度升高分布的影响。铜损失分解成DC损耗,股线级AC损耗和束级AC损耗。结果表明,交流损耗可以显着提高绕组温度并影响槽中的温度分布。束级损耗以高速变为主导,但对槽中的热点位置有很小的影响,而股线级损失可能将热点拉到槽开口。一个12插槽10极FSCW永磁机的原型化,并测量以验证AC损耗对绕组温度升高的影响。所获得的结果对于设计人员来说有助于构建绕组的详细的集合参数热模型或用于插入热传感器以捕获槽中的真正热点的制造商。

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