Investigation of a Novel Consequent-Pole Flux-Intensifying Memory Machine

This paper mainly focuses on the investigation and analysis of a novel consequent-pole flux-intensifying memory machine (CP-FIMM). The proposed CP-FIMM exhibits the advantages of a satisfactory flux-regulation range, reduction of the required magnetizing current magnitude, as well as similar torque...

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Main Authors: Rui Tu, Hui Yang, Heyun Lin, Hanlin Zhan, Di Wu, Minghu Yu, Liang Chen, Wenjie Chen
Format: Article
Language:English
Published: MDPI AG 2022-07-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/15/15/5501
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author Rui Tu
Hui Yang
Heyun Lin
Hanlin Zhan
Di Wu
Minghu Yu
Liang Chen
Wenjie Chen
author_facet Rui Tu
Hui Yang
Heyun Lin
Hanlin Zhan
Di Wu
Minghu Yu
Liang Chen
Wenjie Chen
author_sort Rui Tu
collection DOAJ
description This paper mainly focuses on the investigation and analysis of a novel consequent-pole flux-intensifying memory machine (CP-FIMM). The proposed CP-FIMM exhibits the advantages of a satisfactory flux-regulation range, reduction of the required magnetizing current magnitude, as well as similar torque with much less PM utilization compared to its conventional counterpart. By designing the <i>q</i>-axis flux barriers, the flux-intensifying structure can be realized to enhance the demagnetization withstand capability of the CP-FIMM. The machine topology and operating principle are described. Moreover, the equivalent magnetic circuit model is developed to highlight the performance improvement of the proposed CP-FIMM. Finally, the electromagnetic performance of the proposed CP-FIMM is compared with that of a benchmark conventional FIMM by 2-D and 3-D finite element analysis.
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spelling doaj.art-96bec12ca8764cc2b6baf762a9c111922023-12-01T22:55:00ZengMDPI AGEnergies1996-10732022-07-011515550110.3390/en15155501Investigation of a Novel Consequent-Pole Flux-Intensifying Memory MachineRui Tu0Hui Yang1Heyun Lin2Hanlin Zhan3Di Wu4Minghu Yu5Liang Chen6Wenjie Chen7School of Electrical Engineering, Southeast University, Nanjing 210096, ChinaSchool of Electrical Engineering, Southeast University, Nanjing 210096, ChinaSchool of Electrical Engineering, Southeast University, Nanjing 210096, ChinaSchool of Mechanical Engineering and Automation, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, ChinaGuangdong Welling Motor Manufacturing Co., Ltd., Foshan 528311, ChinaGuangdong Welling Motor Manufacturing Co., Ltd., Foshan 528311, ChinaMidea Group Corporate Research Center, Foshan 528311, ChinaMidea Group Corporate Research Center, Foshan 528311, ChinaThis paper mainly focuses on the investigation and analysis of a novel consequent-pole flux-intensifying memory machine (CP-FIMM). The proposed CP-FIMM exhibits the advantages of a satisfactory flux-regulation range, reduction of the required magnetizing current magnitude, as well as similar torque with much less PM utilization compared to its conventional counterpart. By designing the <i>q</i>-axis flux barriers, the flux-intensifying structure can be realized to enhance the demagnetization withstand capability of the CP-FIMM. The machine topology and operating principle are described. Moreover, the equivalent magnetic circuit model is developed to highlight the performance improvement of the proposed CP-FIMM. Finally, the electromagnetic performance of the proposed CP-FIMM is compared with that of a benchmark conventional FIMM by 2-D and 3-D finite element analysis.https://www.mdpi.com/1996-1073/15/15/5501consequent-poleflux-intensifyingmemory machinevariable flux
spellingShingle Rui Tu
Hui Yang
Heyun Lin
Hanlin Zhan
Di Wu
Minghu Yu
Liang Chen
Wenjie Chen
Investigation of a Novel Consequent-Pole Flux-Intensifying Memory Machine
Energies
consequent-pole
flux-intensifying
memory machine
variable flux
title Investigation of a Novel Consequent-Pole Flux-Intensifying Memory Machine
title_full Investigation of a Novel Consequent-Pole Flux-Intensifying Memory Machine
title_fullStr Investigation of a Novel Consequent-Pole Flux-Intensifying Memory Machine
title_full_unstemmed Investigation of a Novel Consequent-Pole Flux-Intensifying Memory Machine
title_short Investigation of a Novel Consequent-Pole Flux-Intensifying Memory Machine
title_sort investigation of a novel consequent pole flux intensifying memory machine
topic consequent-pole
flux-intensifying
memory machine
variable flux
url https://www.mdpi.com/1996-1073/15/15/5501
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AT diwu investigationofanovelconsequentpolefluxintensifyingmemorymachine
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