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An Overview of Methods and a New Three-Dimensional FEA and Analytical Hybrid Technique for Calculating AC Winding Losses in PM Machines

机译:用于计算PM机器交流绕组损耗的方法和新的三维FEA和分析混合技术概述

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摘要

This article proposes a new hybrid analytical and numerical finite element (FE) based method for calculating ac eddy current losses in wire windings and demonstrates its applicability for axial flux permanent magnet electric machines. The method takes into account three-dimensional (3-D) field effects in order to achieve accurate results and yet greatly reduce computational efforts. The new 3-D FE-based method is advantageous as it employs minimum simplifications and considers the end turns in the eddy current path, the magnetic flux density variation along the effective length of coils, and the field fringing and leakage, which ultimately increases the accuracy of simulations. This study is one of the first ones to compare meticulous 3-D finite element analysis (FEA) models with more approximate, but faster solution methods, which can be employed in the optimization process. The accuracy of the 3-D FEA calculations has been confirmed through tests on a prototype axial flux permanent magnet machine. The proposed method is applicable for cases with majority of ac copper losses induced due to external magnetic flux sources, such as permanent magnets. Examples of such machines designs are coreless or open slot PM machines with conductors sizes smaller than skin depth.
机译:本文提出了一种新的混合分析和数值有限元(FE)基于电线绕组中的AC涡流损耗的方法,并证明了其对轴向磁通永磁电机的适用性。该方法考虑了三维(3-D)现场效果,以实现准确的结果,但大大降低了计算工作。新的3-D Fe基方法是有利的,因为它采用最小简化,并考虑涡流路径中的末端转动,沿线线圈的有效长度的磁通密度变化,以及最终增加的磁场流苏和泄漏。最终增加了模拟的准确性。本研究是第一个比较细致的3-D有限元分析(FEA)模型的近似的第一元素之一,但可以在优化过程中采用更快的解决方案方法。通过对原型轴向磁通永磁机的测试确认了3-D FEA计算的准确性。所提出的方法适用于由于外部磁通源(如永磁体)引起的大多数AC铜损失的情况。这种机器设计的示例是无芯或打开槽PM机器,导体尺寸小于肤浅。

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