电枢(电气工程)
磁链
电感
磁铁
扭矩
定子
有限元法
磁阻
控制理论(社会学)
磁通量
磁场
直接转矩控制
工程类
计算机科学
机械工程
物理
电气工程
电压
结构工程
感应电动机
量子力学
人工智能
热力学
控制(管理)
作者
Yang Xiao,Z. Q. Zhu,G.W. Jewell,J.T. Chen,Di Wu,Liming Gong
标识
DOI:10.1109/tec.2021.3132588
摘要
Asymmetric interior permanent magnet (AIPM) rotor topologies can achieve torque enhancement in IPM synchronous machines without the increase of PM usage due to utilizing magnetic-field-shifting (MFS) effect by reducing the current angle difference between maximum PM and reluctance torque components. This paper investigates the influence of armature reaction on MFS effect in AIPM machines. A general model of IPM machines considering MFS effect is analytically developed and the AIPM and IPM machines using the same stator, rotor diameter and total PM amount are comparatively studied. It shows that the armature reaction affects the MFS effect in both AIPM and IPM machines and the influence is more significant in AIPM machine. The relationships between MFS effects in PM flux-linkage and inductance characteristics and current angles for maximum PM and reluctance torque components are revealed. It confirms that the change of current angles of torque components is due to the MFS effect in PM flux-linkage and inductance characteristics in both AIPM and IPM machines. Besides, the developed machine model considering MFS effect is verified by finite element analysis. Finally, a small-scale AIPM machine prototype is fabricated and measured to validate the finite element analysis.
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