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Calculation of end-winding leakage inductance for hairpin winding high power density traction machines using the PEEC method

机译:使用PEEC方法计算发夹绕组高功率密度牵引机的终止漏电电感

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The computation of end-winding leakage inductance is often an expensive task during the design process of electrical machines, but still important for an accurate estimation of the expected short circuit current of the evaluated design. Since commonly used 3D finite element analysis (FEA) based approaches require complex modelling and consist of time consuming solving, they are less suitable for a fast evaluation. Alternatively, methods based on the Neumann-Integral can decrease the calculation time and reduce the model complexity, but suffer from the requirement of numerical integration. This paper presents an enhanced approach, based on the partial element equivalent circuit (PEEC) method, to estimate the end-winding leakage inductance by applying closed form analytical solutions for fundamental PEEC cell geometries to arbitrary hairpin winding configurations. To emphasize the benefit and the merits of the proposed approach, a study case traction motor is analyzed and the results are compared to complex 3D FEA and measurements by evaluating the short circuit current. Finally, the approach is used to estimate the influence of short pitchening on the end-winding leakage inductance.
机译:在电机的设计过程中,终端绕组泄漏电感的计算通常是昂贵的任务,但对于准确估计评估设计的预期短路电流仍然很重要。由于常用的3D有限元分析(FEA)的方法需要复杂的建模并由耗时求解,它们不太适合快速评估。或者,基于NeuMann-Integral的方法可以降低计算时间并降低模型复杂性,但遭受数值集成的要求。本文通过基于部分元素等效电路(PEEC)方法,提高了一种增强的方法,通过应用于基本的PEEC细胞几何形状到任意发夹绕组配置来估计终结漏电电感。为了强调所提出的方法的益处和优点,分析了研究壳体牵引电动机,并通过评估短路电流进行复杂的3D FEA和测量结果。最后,该方法用于估计短接口对端绕漏电电感的影响。

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