Optimization of Axial-Flux PM Machines for Improved Torque Density by Simple Non-Linear Magnetic Analysis

Y. Kano, K. Tonogi, T. Kosaka, N. Matsui
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引用次数: 7

Abstract

In this paper, a simple non-linear magnetic analysis- based optimum design of axial-flux permanent magnet (AFPM) machines is presented, which realizes the maximization of torque density while keeping motor volume. The proposed analysis consists of the geometric-flux-tube-based equivalent-magnetic-circuit model. The model includes saturable permeances taking into account the local magnetic saturation in the core. At first, the validity of the proposed analysis is examined for the various design free parameters. After verifying the accuracy of the torque computation of the proposed analysis through the comparisons with 3D-FEA, 8-pole 12-slot AFPM machine is optimally designed. Comparing to the traditional 3D-FEA, the design method proposed here has the same accuracy, while the computation time is as short as 1/700.
基于简单非线性磁分析的轴向磁通永磁电机转矩密度优化
提出了一种基于非线性磁分析的简单轴向磁通永磁电机优化设计方法,在保持电机体积不变的前提下,实现了转矩密度的最大化。所提出的分析包括基于几何磁通管的等效磁路模型。该模型考虑了地核局部磁饱和的饱和磁导率。首先,在各种设计自由参数下检验了所提出分析的有效性。通过与3D-FEA的对比验证了所提分析的转矩计算的准确性,并对8极12槽AFPM机床进行了优化设计。与传统的三维有限元分析相比,本文提出的设计方法具有相同的精度,而计算时间仅为1/700。
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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