一种用于不规则磁铁永磁机械电磁性能快速预测的场叠加模型

IF 1.9 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Pengjie Xiang;Liang Yan;Xiaoshuai Liu;Xinyi Li;Xinghua He;Wei Hua;Cungang Hu
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引用次数: 0

摘要

准确、快速地预测气隙磁场对于轮辐式永磁,特别是高槽极数和异形磁体的设计和优化至关重要。常规场叠加分析模型是一种快速预测永磁电机电磁性能的计算方法;然而,它不能直接用于具有不规则磁铁和极间铁的辐条式永磁机床。本文提出了一种改进的基于分段虚拟域(SVDs)的磁场叠加方法,以实现考虑不规则磁体和极间铁的轮辐式永磁机床的高精度、快速磁场预测。改进的场叠加法可以有效地减少需要建模的畴数,节省计算时间,并且可以高精度地考虑极性间铁的层间磁阻。首先,给出了一种带有准梯形磁铁和准三角铁的轮辐式永磁机床的原理图,讨论了所提出的解析建模方法的主要特点,并与传统的叠加法进行了比较。其次,利用分段虚域法和半量程傅立叶级数展开,得到了有和没有定子槽的开路气隙场、反电动势和电机转矩输出的数学表达式。最后,对电磁性能进行了有限元计算,验证了改进的场叠加法。结果表明,解析模型与数值结果吻合较好,计算时间由92 s缩短至0.631 s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Field-Superposition Model for Fast Electromagnetic Performance Prediction of PM Machine With Irregular Magnets and Irons
Accurate and fast prediction of air-gap magnetic field is critical for the design and optimization of spoke-type permanent-magnet (PM) machines especially those with high slot/pole number and irregular-shaped magnets. Conventional field-superposition analytical model is a fast computation method for electromagnetic performance prediction of PM machines; however, it cannot be directly used in the spoke-type PM machines with irregular magnets and interpolar irons. In this article, an improved field-superposition method based on segmented virtual domains (SVDs) is proposed to achieve high-precision and fast magnetic field prediction of the spoke-type PM machine accounting for irregular magnets and interpolar irons. The number of domains requiring modeling can be reduced effectively to save computation time, and the inter-layer magnetic resistance of the interpolar iron can be taken account for high precision by the improved field-superposition method. First, the schematic of one spoke-type PM machine with quasi-trapezoidal magnet and quasi-triangular iron is presented, and the major features of the proposed analytical modeling method are discussed and compared with conventional superposition method. Second, by taking advantage of the segmented virtual-domain method along with half-range Fourier series expansion, the open-circuit air-gap field with and without stator slots, the back electromotive force, and the torque output of the electric machine are formulated mathematically. Finally, the finite-element method is conducted on the electromagnetic performance calculation to validate the improved field-superposition method. The results show that the analytical model agrees with the numerical results well, and the computation time can be reduced from 92 to 0.631 s.
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来源期刊
IEEE Transactions on Magnetics
IEEE Transactions on Magnetics 工程技术-工程:电子与电气
CiteScore
4.00
自引率
14.30%
发文量
565
审稿时长
4.1 months
期刊介绍: Science and technology related to the basic physics and engineering of magnetism, magnetic materials, applied magnetics, magnetic devices, and magnetic data storage. The IEEE Transactions on Magnetics publishes scholarly articles of archival value as well as tutorial expositions and critical reviews of classical subjects and topics of current interest.
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