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Electrical machines: Comparison of existing analytical models and FEM for calculation of turn-to-turn capacitance in formed windings

机译:电机:现有分析模型和FEM的比较,用于计算成形绕组中的匝间电容

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Calculation of turn-to-turn capacitance (Ctt) in electrical machines (EMs) with formed windings is presented in this paper for rectangular and round cross-section wire. Variation of Ctt with wire/coil properties in formed windings and deviation between analytical methods (AMs) and finite element method (FEM) have not been presented until now. This dearth in publications, necessitates this comparison between methods for Ctt calculation in formed windings. As such, three calculation methods are used in this paper for the calculation of Ctt in case of rectangular conductors: an FEM and two previously published AMs. The influence of wire thickness and wire corner radius on Ctt is investigated. For round cross-section wires, four methods are presented: an FEM and three different AMs. The influence of wire size, insulation thickness and relative dielectric constant of the wire insulation on Ctt are considered. The relative error, i.e. deviation among the methods applied is presented for both types of wires. Finally, the results presented here demonstrate that the method for Ctt calculation should be carefully considered for different cases, since the wrong selected method can result in a deviation of even 400%.
机译:本文针对矩形和圆形横截面导线,介绍了具有成形绕组的电机(EM)中的匝间电容(Ctt)的计算。到目前为止,尚未提出成形绕组中Ctt随导线/线圈特性的变化以及分析方法(AM)与有限元方法(FEM)之间的偏差。出版物中的这种稀缺性使得必须在成形绕组中进行Ctt计算的方法之间进行比较。因此,在矩形导体的情况下,本文使用三种计算方法来计算Ctt:FEM和两个先前发布的AM。研究了线材厚度和线角半径对Ctt的影响。对于圆形横截面导线,提出了四种方法:有限元法和三种不同的AM。考虑了导线尺寸,绝缘层厚度和导线绝缘层的相对介电常数对Ctt的影响。两种类型的导线都存在相对误差,即所用方法之间的偏差。最后,此处显示的结果表明,应根据不同情况仔细考虑Ctt计算方法,因为错误选择的方法甚至可能导致400%的偏差。

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