Numerical-field analysis of the magnetic conductivity of the slot dispersion of the stator winding of induction motors

Volodymyr Milykh
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Abstract

Introduction. The magnetic fields and the corresponding magnetic conductivities of the slot dispersion of the stator winding of three-phase induction motors (IM) are studied. Such studies are relevant in their design and are one of the bases for calculating a number of energy parameters and characteristics of motors. In the classical design of an IM, which is still valid, the specified magnetic conductivities are determined analytically according to the simplified slot dispersion model, therefore they may not always provide sufficient accuracy due to a number of assumptions and conventions. Goal. Further development of the IM design system by means of a numerical-field calculation analysis of the magnetic conductivity of the slot dispersion of their stator winding, as well as a comparative check of the relevant analytical formulas from various methods of classical design. Results. The slot dispersion of IM is determined by numerical calculations using the FEMM program within the stator tooth steps. For the research, four variants of the shapes of the stator slots, which are common in modern IMs of small and medium power, are accepted. In the calculations, calculation models with strongly saturated and unsaturated in the magnetic relation with the stator core teeth are considered. The numerical-field method shows that the classical design method can give both sufficiently accurate results and unacceptable errors in determining the magnetic conductivities of slot dispersion of IM. Discussion and prospects for further development. The provided numerical-field analysis method and the obtained results of the calculation of slot dispersion of IM windings are recommended as a basis for improving the system of their design.
感应电机定子绕组槽分散磁导率的数值场分析
简介对三相异步电机(IM)定子绕组槽散的磁场和相应的磁导率进行了研究。这些研究与电机设计相关,是计算电机一系列能量参数和特性的基础之一。在目前仍然有效的传统异步电机设计中,指定的磁导率是根据简化的槽分散模型通过分析确定的,因此,由于一些假设和约定俗成的原因,这些磁导率并不总能提供足够的准确性。目标通过对定子绕组槽散磁的磁导率进行数值场计算分析,以及对各种经典设计方法的相关分析公式进行比较检查,进一步开发 IM 设计系统。结果IM 的槽散是通过定子齿步内的 FEMM 程序进行数值计算确定的。研究采用了现代中小功率 IM 中常见的四种定子槽形状。在计算中,考虑了与定子铁芯齿之间的磁力关系为强饱和和非饱和的计算模型。数值-场方法表明,经典设计方法既能给出足够精确的结果,也能在确定 IM 槽散磁导率时给出不可接受的误差。讨论和进一步发展前景。建议将所提供的数值-场分析方法和所获得的 IM 绕组槽分散计算结果作为改进其设计系统的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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