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首页> 外文期刊>Journal of Electrical Engineering >Exact analytical modeling of magnetic vector potential in surface inset permanent magnet DC machines considering magnet segmentation
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Exact analytical modeling of magnetic vector potential in surface inset permanent magnet DC machines considering magnet segmentation

机译:考虑磁体分段的表面插入式永磁直流电机中磁矢量势的精确解析模型

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摘要

Surface inset permanent magnet DC machine can be used as an alternative in automation systems due to their high efficiency and robustness. Magnet segmentation is a common technique in order to mitigate pulsating torque components in permanent magnet machines. An accurate computation of air-gap magnetic field distribution is necessary in order to calculate machine performance. An exact analytical method for magnetic vector potential calculation in surface inset permanent magnet machines considering magnet segmentation has been proposed in this paper. The analytical method is based on the resolution of Laplace and Poisson equations as well as Maxwell equation in polar coordinate by using sub-domain method. One of the main contributions of the paper is to derive an expression for the magnetic vector potential in the segmented PM region by using hyperbolic functions. The developed method is applied on the performance computation of two prototype surface inset magnet segmented motors with open circuit and on load conditions. The results of these models are validated through FEM method.
机译:表面插入式永磁直流电机由于其高效率和坚固性,可以用作自动化系统的替代产品。为了减轻永磁电机中的脉动转矩分量,磁体分段是一种常用技术。为了计算机器性能,必须准确计算气隙磁场分布。提出了一种考虑磁体分段的表面嵌入永磁电机中磁矢量势计算的精确解析方法。该分析方法是基于子域方法,在极坐标中基于Laplace和Poisson方程以及Maxwell方程的分辨率。本文的主要贡献之一是通过使用双曲函数来得出分段PM区域中磁矢量势的表达式。该方法被用于两个开路和负载条件下的原型表面插入式磁体分段电动机的性能计算。这些模型的结果通过有限元方法进行了验证。

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