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Optimization of Magnets Segmentation for Eddy Current Losses Reduction in Permanent Magnets Electrical Machines

机译:永磁机电机涡流损耗减少磁体分割的优化

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摘要

Magnet segmentation is an effective and simple technique for eddy current losses reduction in high power permanent magnets electrical machines. This work aims to study the magnets segmentation effects on eddy current losses in magnets. First, an analysis of eddy currents and associated losses in magnets is made. After, the magnets segmentation effects on losses reduction in the range of the industrial frequencies from few Hz to dozen of kHz are investigated. To achieve these tasks, a 2D non linear model based on finite element analysis is developed under MATLAB environment. The developed model is applied to a synchronous machine with surface mounted permanent magnets. In a second part of the work, we have adopted an optimization process which consists to associate the finite element analysis to genetic algorithm. In this stage of the work, we aim to find the best parameters of magnets segmentation and avoid any segmentations anomaly that appears under some conditions such as skin effect, and which can leads to losses increases instead of their reduction.
机译:磁体分割是一种有效而简单的技术,用于高功率永磁机电机的涡流损耗减少。这项工作旨在研究磁铁分割对磁铁中涡流损耗的影响。首先,制造对磁铁中的涡流和相关损耗的分析。之后,研究了对来自少数Hz至大约kHz的工业频率范围减少的磁体分割对损失的影响。为了实现这些任务,在Matlab环境下开发了基于有限元分析的2D非线性模型。开发的模型应用于具有表面安装永磁体的同步机。在工作的第二部分中,我们采用了优化过程,该过程包括将有限元分析与遗传算法相关联。在这项工作的阶段,我们的目标是找到磁铁分割的最佳参数,并避免出现在诸如皮肤效果的某些条件下出现的任何细分异常,并且可能导致损失增加而不是减少。

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