考虑电枢磁场影响的大转矩永磁转矩电机分析方法

Jiawei Chai;Xianguo Gui;Qiang Gao;Dianguo Xu
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引用次数: 0

摘要

与传统永磁同步电机(PMSM)相比,大转矩永磁转矩电机(PMTM)的主要特点是电枢电流大,这对磁路饱和有很大的影响,因此本文提出了一种新的分析方法(AM)。这种新型调幅的关键是考虑了与输出转矩密切相关的电枢反应磁通和电枢漏磁通。首先推导了永磁体和电枢绕组产生的磁动势(MMF)表达式,同时通过规划磁通路径考虑开槽效应;此外,计算了电枢绕组产生的泄漏磁通密度表达式,计算出齿的磁通密度等效系数为2/3,用于解决各齿饱和不均匀的问题。然后,在提出主通量因子和泄漏通量因子的基础上,提出了一种改进的迭代过程,通过该迭代过程可以获得各轭架和齿的通量密度,有利于获得更精确的气隙通量密度和通量链。最后,制作了一台60极54槽的样机,并利用该方法和有限元法计算了电机的反电动势和输出转矩等性能。有限元分析和实验测试结果表明,这种新型调幅足以计算PMTM的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical Method of Permanent Magnet Torque Machine with High Torque for Considering the Influence of Armature Magnetic Field
Compared to the conventional permanent magnet synchronous machine (PMSM), the main characteristic of permanent magnet torque machine (PMTM) with high torque is that armature current is high, which has a great influence on magnetic circuit saturation, so this paper proposes a novel analytical method (AM) considering this problem. The key of this new AM is to consider armature reaction flux and armature leakage flux, which are closely related to output torque. Firstly, the expressions, including magnetomotive force (MMF) generated by permanent magnets (PMs) and armature windings are derived, and meanwhile slotting effect is considered by planning flux path. In addition, the expression of leakage flux density generated by armature windings are calculated, and flux density equivalence coefficient of tooth is calculated to be 2/3, which is used to solve the problem of uneven saturation of each tooth. Then, based on main flux factor and leakage flux factor proposed, an improved iteration process is proposed, and by this new process, the flux density of each yoke and tooth can be obtained, which is beneficial to obtain more accurate air-gap flux density and flux linkage. Finally, a prototype of 60-pole 54-slot is fabricated, and the performances of the electric machine, such as back electromotive force (EMF) and output torque, are calculated by this new AM and finite element method (FEM). The results of FEM and experimental test show that this new AM is good enough to calculate the performance of PMTM.
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