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Form-wound stator winding for high-speed induction motors

机译:高速感应电动机的绕线定子绕组

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Random-wound stator windings of high-speed induction motors (HSIM) have serious problems with eddy-current losses because their circular copper wires are randomly distributed. As a result, the differences in the total electromotive forces induced in the parallel conductors cause high additional losses in random-wound windings. Moreover, the eddy-current losses are underestimated during design stage due to difficulties of modeling eddy-current effect in the random-wound windings. A form-wound stator winding is an alternative option to reduce those losses. A roughly designed model of form-wound winding is presented based on the original random-wound stator windings of HSIM. Time-discretized finite-element analysis (FEA) is used to model losses in a 300 kW HSIM with random and form-wound stator windings. Those losses are used as the input data for the temperature rise analysis to check temperature rise constraints of the designed machine. Possibilities using form-wound windings for HSIM are evaluated from the losses and temperature rise analysis.
机译:高速感应电动机(HSIM)的随机缠绕定子绕组存在严重的涡流损耗问题,因为它们的圆形铜线是随机分布的。结果,在平行导体中感应出的总电动势的差异在随机缠绕的绕组中引起很高的附加损耗。此外,由于难以对随机绕线绕组中的涡流效应进行建模,因此在设计阶段低估了涡流损耗。绕线定子绕组是减少这些损耗的另一种选择。基于HSIM的原始随机缠绕定子绕组,提出了一个粗略设计的绕模绕组模型。时间离散的有限元分析(FEA)用于模拟300 kW HSIM中带有随机绕组和定型绕线定子绕组的损耗。这些损失用作温度上升分析的输入数据,以检查设计机器的温度上升限制。从损耗和温度上升分析中评估了将绕线绕组用于HSIM的可能性。

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