Computationally Efficient Semi-Analytical Model for the Calculation of the No-Load Magnetic Field in High-Speed Permanent Magnet Machines

M. Merdzan
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引用次数: 1

Abstract

High-speed slotted permanent magnet (PM) machines are characterized by high power density and high efficiency, which makes them widely used in different applications. Consequently, fast and accurate models which predict their behaviour are highly required. Eddy current effects, which, due to the existence of slots, are present even at no-load conditions, impose long solving time for finite element models (FEM). As an alternative, this paper presents a harmonic model (HM) for the calculation of no-load magnetic field in high-speed slotted permanent magnet machines. Beside having inherently shorter solving time than FEM, HM proposed in this paper brings additional reduction in the model size and solving time. This is achieved by identifying harmonic components which actually contribute to the electromagnetic field. Components which make no contribution, but are present in the generic field solution, are eliminated from the model.
高速永磁电机空载磁场计算的高效半解析模型
高速开槽永磁电机具有高功率密度和高效率的特点,在不同的应用领域得到了广泛的应用。因此,需要快速准确的模型来预测它们的行为。涡流效应由于槽的存在,即使在空载条件下也存在,使有限元模型的求解时间较长。本文提出了一种计算高速开槽永磁电机空载磁场的谐波模型(HM)。除了固有的求解时间比FEM短外,本文提出的HM还可以进一步减小模型尺寸和求解时间。这是通过识别实际上对电磁场有贡献的谐波分量来实现的。没有贡献但出现在通用字段解决方案中的组件将从模型中消除。
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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