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AC Resistance Factor in One-Layer Form-Wound Winding Used in Rotating Electrical Machines

机译:旋转电机的单层绕线绕组中的交流电阻系数

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摘要

Analytical calculation of circulating and eddy currents in windings has been under research for almost a century, yet the calculation accuracy has improved slowly. However, over the recent years, the development of finite-element methods (FEM) has boosted the research. A lot of effort has been taken to calculate the ac resistance losses in transformers in the past, whereas rotating electrical machines have received less attention. These models have not taken the end-winding effect into account. In this paper, 2-D FEM results are compared with analytical equations. Based on these results, a more accurate model compared with Dowell's model for single-layer form-wound windings used in electrical machines is developed empirically, and the end winding resistance is analytically taken into account in the results. A maximum error of 5% is achieved in the range of 0–200 Hz for a single-layer form-wound winding.
机译:绕组中的环流和涡流的分析计算已经研究了近一个世纪,但计算精度却逐渐提高。但是,近年来,有限元方法(FEM)的发展推动了这一研究的发展。过去,在计算变压器中的交流电阻损耗方面已付出了很多努力,而旋转电机受到的关注较少。这些模型没有考虑末端缠绕效应。本文将二维有限元分析结果与解析方程进行了比较。根据这些结果,根据经验开发了与用于电机的单层成型绕线绕组的Dowell模型相比更准确的模型,并在分析中考虑了端部绕组电阻。对于单层绕制绕组,在0–200 Hz的范围内可实现5%的最大误差。

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