双三相磁通开关永磁电机的两种建模方法

Mingjin Hu, W. Hua, Jianjian Meng, G. Zhao
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引用次数: 1

摘要

本文采用双dq-框架法和矢量空间分解(VSD)理论建立了双三相磁通开关永磁电机的数学模型,并对其进行了研究。首先,对双三相永磁磁链和定子绕组电感进行了有限元分析,并考虑了主谐波;然后,提出了一种基于VSD的改进变换,将主谐波变换为直流分量,与双dq方法相比,具有更好的解耦谐波映射关系。它还可以将$\theta$·函数电感矩阵转换为六维常数形式。最后,推导了两种方法的电压方程和转矩方程,并进行了比较。双dq方法可以很好地解释电流不平衡,而VSD方法可以更有效地处理谐波,并得到一个简单的机器模型。本文的工作为双三相FSPM电机的控制策略奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of a Dual Three-Phase Flux-Switching Permanent Magnet Machine Using Two Methods
In this paper, the mathematical model of a dual three-phase flux-switching permanent magnet (FSPM) machine is established and investigated by both methods, namely, the double-dq-frame approach and the vector space decomposition (VSD) theory. Firstly, the dual three-phase PM flux-linkages and stator winding inductances are analyzed via finite element analysis and the major harmonics are considered. Then, an improved transformation based on VSD is proposed to transform the major harmonics into DC components, and shows better decoupled harmonics mapping relationship compared to the double-dq approach. It can also convert the $\theta$ · functional inductance matrix to constant form in six dimensions. Finally, the voltage equation and torque equation are derived and compared for both methods. The double-dq approach may be good at interpreting current unbalance, while the VSD approach is more efficient to handle harmonics and results a simple machine model. The work in this paper lays a foundation for the control strategies of the dual three-phase FSPM machine.
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