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Loss Minimization for Form-Wound Stator Winding of a High-Speed Induction Motor

机译:高速感应电动机的定型定子绕组的损耗最小化

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摘要

Resistive losses in the form-wound stator winding of a high-speed induction motor (HSIM) are minimized in the design stage by using Differential Evolution (DE). Time-discretized finite-element analysis (FEA) serves as a tool to offer electromagnetic losses in the machine for the optimization process. Temperature rise of the machines is fast checked during the optimization by using a thermal network model. Insulation thicknesses and power factor are other constraints in the algorithm. Time consumption of using time-discretized FEA is still a problem when a large number of variables or motor dimensions is required for the optimization algorithm. To reduce the number of required variables, the influence of stator dimensions on the electromagnetic losses is analyzed by using the Taguchi approach. From this evaluation, the important stator parameters to be varied during optimization algorithm are determined. Finally, form-wound stator winding with a minimum loss for a HSIM is obtained within certain limitations.
机译:在设计阶段,通过使用差分进化(DE),可将高速感应电动机(HSIM)的定型绕线定子绕组中的电阻损耗降至最低。时间离散的有限元分析(FEA)可作为一种工具,为优化过程提供机器中的电磁损耗。在优化过程中,使用热网络模型可以快速检查机器的温升。绝缘厚度和功率因数是该算法中的其他约束。当优化算法需要大量变量或电机尺寸时,使用时间离散的FEA所花费的时间仍然是一个问题。为了减少所需变量的数量,使用田口方法分析了定子尺寸对电磁损耗的影响。根据该评估,确定在优化算法期间要改变的重要定子参数。最后,在一定的限制内获得了具有最小HSIM损耗的绕线定子绕组。

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