Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation
This paper presents a contra-rotating (CR) brushless integrated flux-modulation (BIFM) machine with open-slot structure for wind power generation, termed CR-BIFM machine. The presented machine employs two contra-rotating rotors coupled with two sets of wind turbine blades, thus being able to capture...
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sg-ntu-dr.10356-1687372023-06-23T15:41:19Z Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation Cao, Libing Yang, Guanghui Zuo, Yuefei He Yaojie Zhao, Chenhao Xie, Shuangchun Lee, Christopher Ho Tin School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Contra-Rotating Decoupling Design This paper presents a contra-rotating (CR) brushless integrated flux-modulation (BIFM) machine with open-slot structure for wind power generation, termed CR-BIFM machine. The presented machine employs two contra-rotating rotors coupled with two sets of wind turbine blades, thus being able to capture more wind energy than conventional single-rotor wind turbines. Due to the dual flux-modulation effect and flux-bridge effect, the presented machine exhibits high torque/power density, making it suitable for direct-drive wind power generation without issues related to mechanical gearboxes. As two sets of windings share the same stator slots in the presented machine, the decoupling design of windings is systematically investigated from the perspective of air-gap modulated magnetic field, considering the influence of both stator and rotors. The advantages of the presented machine are comprehensively evaluated compared to the baseline machine, showing that the presented machine exhibits higher torque/power density, higher efficiency, higher power factor, higher PM utilization, and better vibration performance. Finally, a prototype is fabricated and tested to validate the analysis. National Research Foundation (NRF) Submitted/Accepted version This work was supported by the National Research Foundation (NRF) Singapore under its NRF Fellowship Grant NRF-NRFF12-2020-0003. 2023-06-19T02:07:52Z 2023-06-19T02:07:52Z 2023 Journal Article Cao, L., Yang, G., Zuo, Y., He Yaojie, Zhao, C., Xie, S. & Lee, C. H. T. (2023). Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation. IEEE Transactions On Industrial Electronics, 70(12), 11934-11947. https://dx.doi.org/10.1109/TIE.2023.3239901 0278-0046 https://hdl.handle.net/10356/168737 10.1109/TIE.2023.3239901 2-s2.0-85148432491 12 70 11934 11947 en NRF-NRFF12-2020-0003 IEEE Transactions on Industrial Electronics © 2023 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works. The published version is available at: https://doi.org/10.1109/TIE.2023.3239901. application/pdf |
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Engineering::Electrical and electronic engineering Contra-Rotating Decoupling Design Cao, Libing Yang, Guanghui Zuo, Yuefei He Yaojie Zhao, Chenhao Xie, Shuangchun Lee, Christopher Ho Tin Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation |
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This paper presents a contra-rotating (CR) brushless integrated flux-modulation (BIFM) machine with open-slot structure for wind power generation, termed CR-BIFM machine. The presented machine employs two contra-rotating rotors coupled with two sets of wind turbine blades, thus being able to capture more wind energy than conventional single-rotor wind turbines. Due to the dual flux-modulation effect and flux-bridge effect, the presented machine exhibits high torque/power density, making it suitable for direct-drive wind power generation without issues related to mechanical gearboxes. As two sets of windings share the same stator slots in the presented machine, the decoupling design of windings is systematically investigated from the perspective of air-gap modulated magnetic field, considering the influence of both stator and rotors. The advantages of the presented machine are comprehensively evaluated compared to the baseline machine, showing that the presented machine exhibits higher torque/power density, higher efficiency, higher power factor, higher PM utilization, and better vibration performance. Finally, a prototype is fabricated and tested to validate the analysis. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Cao, Libing Yang, Guanghui Zuo, Yuefei He Yaojie Zhao, Chenhao Xie, Shuangchun Lee, Christopher Ho Tin |
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Article |
author |
Cao, Libing Yang, Guanghui Zuo, Yuefei He Yaojie Zhao, Chenhao Xie, Shuangchun Lee, Christopher Ho Tin |
author_sort |
Cao, Libing |
title |
Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation |
title_short |
Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation |
title_full |
Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation |
title_fullStr |
Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation |
title_full_unstemmed |
Analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation |
title_sort |
analysis of contra-rotating brushless integrated flux-modulation machine with open-slot structure for wind power generation |
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2023 |
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https://hdl.handle.net/10356/168737 |
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1772829064735752192 |