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Overview of analytical models of permanent magnet electrical machines for analysis and design purposes

机译:用于分析和设计目的的永磁电机分析模型概述

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Generally, accurate modelling of electrical machines requires the use of finite-element method. However, FE analysis is too time consuming, especially at firsts design stages, from the point of view of engineers working in R&D departments in the electrical machine industry. To reduce pre-design stages duration, analytical models are often preferred. Two types of analytical models are often used: magnetic equivalent circuits (MEC) and analytical models based on the formal solution of Maxwell's equations in constant permeability regions. However, MEC method is not as generic as the finite element method. In fact, even in the case of a given structure geometry, MEC method has to be adapted if the geometric parameters vary in a large scale. Analytical models based on the formal solution of Maxwell's equations help overcome aforementioned problem. This paper is intended as a tutorial overview based on a review of the state of the art, describing recent developments in the field of analytical modelling of permanent magnet machines.
机译:通常,电机的精确建模需要使用有限元方法。但是,从电机行业研发部门的工程师的角度来看,有限元分析太费时间,尤其是在最初的设计阶段。为了减少预设计阶段的持续时间,通常首选分析模型。通常使用两种类型的分析模型:磁等效电路(MEC)和基于恒定磁导率区域中麦克斯韦方程组形式解的分析模型。但是,MEC方法不像有限元方法那样通用。实际上,即使在给定的结构几何形状的情况下,如果几何参数的变化较大,则必须采用MEC方法。基于麦克斯韦方程组形式解的分析模型有助于克服上述问题。本文旨在作为对现有技术的回顾基础上的教程概述,描述永磁电机分析建模领域的最新发展。

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