Operation Principle and Influence of the Sub‐Harmonic Component Utilized in the Brushless Hybrid Excited Machine with PM in Rotor

Operation Principle and Influence of the Sub‐Harmonic Component Utilized in the Brushless Hybrid Excited Machine with PM in Rotor
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转子永磁无刷混合励磁电机的次谐波分量的工作原理及影响

DOI:
10.1002/tee.23662
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发表时间:
2022-06
影响因子:
1
通讯作者:
Jinyu Wang
Jinyu Wang
中科院分区:
工程技术4区
文献类型:
--
作者:
Liwen Liu;Hongmei Li;Jiabing Wang;Jinyu Wang

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混合励磁电机(HEM)是一种新型的电机,由于其能够灵活调节磁链,保证宽调速范围的运行而备受关注。本文进一步研究了一种新型的转子永磁无刷HEM。通过提供特定的电枢电流,定子磁动势中的次谐波分量将被产生并利用,以实现无刷混合励磁运行。首先,分析了次谐波分量的产生原理。其次,在无刷混合励磁运行,定子电流幅值比m $的影响进行了定量研究。第三,基于二维有限元分析(FEA),分析了无刷HEM的电磁性能在不同的运行状态下,在一个较宽的速度范围内。最后,在一台6 kW无刷HEM样机上进行了实验,验证了理论分析和有限元分析结果的正确性。© 2022日本电气工程师协会。出版社:Wiley Periodicals LLC
Hybrid excited machine (HEM) is a novel type of machine which has attracted much attention as it is able to adjust the flux linkage flexibly and ensure the wide speed range operation. In this paper, a novel brushless HEM with permanent magnet (PM) located in rotor is further researched. By supplying specific armature currents, the sub-harmonic component magnetomotive force (MMF) in stator MMF would be generated and utilized to realize the brushless hybrid excited operation. Firstly, the generation principle of the sub-harmonic component is derived analytically. Secondly, during the brushless hybrid excited operation, the influence of the stator current amplitude ratio m $$ m $$ is quantitatively studied. Thirdly, based on 2D finite element analysis (FEA), the electromagnetic performance of the brushless HEM is analyzed under different operation statuses over a wide speed range. At last, the experiment is performed based on a 6 kW brushless HEM prototype machine, and the correctness of the theoretical analysis and FEA results are validated by the test. © 2022 Institute of Electrical Engineers of Japan. Published by Wiley Periodicals LLC.
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