磁体宽度和铁芯相对磁导率对轮辐式永磁电机铁极半径比的影响:分析、数值和实验研究

A. Jabbari, F. Dubas
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引用次数: 0

摘要

本文提出了一个数学模型,用于确定轮辐式永磁电机(STPMM)中磁极形状的最佳半径,以最小化脉动扭矩分量。所提出的方法基于笛卡尔伪坐标系中拉普拉斯方程和泊松方程在子域模型中关于铁芯相对磁导率效应的形式解析。研究了PM宽度对磁极最佳半径的影响。此外,对于初始和最优机器,在考虑三个特定PM宽度的空载和负载条件下,研究了铁芯相对磁导率对STPMM性能的影响。此外,通过比较齿槽转矩、纹波和磁阻转矩波形,研究了铁心相对磁导率一定值下,磁极形状对脉动转矩分量的影响。为了验证所提出的分析模型的结果,考虑了三个不同PM宽度的电机作为案例研究,并对其性能结果进行了分析和数值比较。制作了两台轮辐式样机,并将实验结果与分析结果进行了比较。可以看出,分析建模结果与数值分析和实验结果一致。
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The Effect of Magnet Width and Iron Core Relative Permeability on Iron Pole Radii Ratio in Spoke-Type Permanent-Magnet Machine: An Analytical, Numerical and Experimental Study
In this paper, we present a mathematical model for determining the optimal radius of the iron pole shape in spoke-type permanent-magnet (PM) machines (STPMM) in order to minimize the pulsating torque components. The proposed method is based on the formal resolution of the Laplace’s and Poisson’s equations in a Cartesian pseudo-coordinate system with respect to the relative permeability effect of iron core in a subdomain model. The effect of PM width on the optimal radius of the iron pole has been investigated. In addition, for initial and optimal machines, the effect of the iron core relative permeability on the STPMM performances was studied at no-load and on-load conditions considering three certain PM widths. Moreover, the effect of iron pole shape on pulsating torque components with respect to certain values of iron core relative permeability was studied by comparing cogging torque, ripple and reluctance torque waveforms. In order to validate the results of the proposed analytical model, three motors with different PM widths were considered as case studies and their performance results were compared analytically and numerically. Two prototype spoke-type machines were fabricated and the experimental results were compared to analytical results. It can be seen that the analytical modeling results are consistent with the numerical analysis and experimental results.
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来源期刊
Iranian Journal of Electrical and Electronic Engineering
Iranian Journal of Electrical and Electronic Engineering Engineering-Electrical and Electronic Engineering
CiteScore
1.70
自引率
0.00%
发文量
13
审稿时长
12 weeks
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