Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation
This paper presents an investigation of an integrated flux-modulated machine for wind power generation. This machine has two rotors which function as two contra-rotating rotors connected to two sets of turbine blades. Hence, compared to conventional wind generators, more wind energy could be capture...
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sg-ntu-dr.10356-1562182022-04-26T03:48:41Z Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation Chen, Hao El-Refaie, Ayman M. Zuo, Yuefei Cai, Shun Xie, Shuangchun Lee, Christopher Ho Tin School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Contra-Rotating Flux-Modulation This paper presents an investigation of an integrated flux-modulated machine for wind power generation. This machine has two rotors which function as two contra-rotating rotors connected to two sets of turbine blades. Hence, compared to conventional wind generators, more wind energy could be captured by this system. Moreover, the integrated machine consists of two sets of stator windings. By regulating the currents in these windings, dual maximum power point tracking control strategy could be achieved. As a result, the wind power conversion efficiency is further improved. Moreover, this wind power generation system exhibits the advantage of high torque/power density due to the enhanced magnetic-gearing effect involved in the integrated flux-modulated machine. Hence, this machine is more suitable for direct-drive wind power generation, where the reliability is improved without the issues related to mechanical gearboxes. The topology and operating principle of the investigated machine are demonstrated. Decoupled design of the two sets of windings is investigated, and a general rule to achieve decoupled windings is illustrated. The advantages of the investigated machine are confirmed in comparison to a benchmark machine. Finally, the investigated machine is prototyped. The validity of the operating principle and the simulation results are verified by experimental results. National Research Foundation (NRF) Submitted/Accepted version This work was supported by the National Research Foundation Singapore (under Grant NRF-NRFF12- 2020-0003). 2022-04-14T07:43:09Z 2022-04-14T07:43:09Z 2021 Journal Article Chen, H., El-Refaie, A. M., Zuo, Y., Cai, S., Xie, S. & Lee, C. H. T. (2021). Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation. IEEE Transactions On Industrial Electronics, 69(9), 8770-8781. https://dx.doi.org/10.1109/TIE.2021.3114710 0278-0046 https://hdl.handle.net/10356/156218 10.1109/TIE.2021.3114710 2-s2.0-85116888459 9 69 8770 8781 en NRF-NRFF12- 2020-0003 IEEE Transactions on Industrial Electronics © 2021 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.2021.3114710. application/pdf |
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Engineering::Electrical and electronic engineering Contra-Rotating Flux-Modulation Chen, Hao El-Refaie, Ayman M. Zuo, Yuefei Cai, Shun Xie, Shuangchun Lee, Christopher Ho Tin Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation |
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This paper presents an investigation of an integrated flux-modulated machine for wind power generation. This machine has two rotors which function as two contra-rotating rotors connected to two sets of turbine blades. Hence, compared to conventional wind generators, more wind energy could be captured by this system. Moreover, the integrated machine consists of two sets of stator windings. By regulating the currents in these windings, dual maximum power point tracking control strategy could be achieved. As a result, the wind power conversion efficiency is further improved. Moreover, this wind power generation system exhibits the advantage of high torque/power density due to the enhanced magnetic-gearing effect involved in the integrated flux-modulated machine. Hence, this machine is more suitable for direct-drive wind power generation, where the reliability is improved without the issues related to mechanical gearboxes. The topology and operating principle of the investigated machine are demonstrated. Decoupled design of the two sets of windings is investigated, and a general rule to achieve decoupled windings is illustrated. The advantages of the investigated machine are confirmed in comparison to a benchmark machine. Finally, the investigated machine is prototyped. The validity of the operating principle and the simulation results are verified by experimental results. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Chen, Hao El-Refaie, Ayman M. Zuo, Yuefei Cai, Shun Xie, Shuangchun Lee, Christopher Ho Tin |
format |
Article |
author |
Chen, Hao El-Refaie, Ayman M. Zuo, Yuefei Cai, Shun Xie, Shuangchun Lee, Christopher Ho Tin |
author_sort |
Chen, Hao |
title |
Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation |
title_short |
Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation |
title_full |
Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation |
title_fullStr |
Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation |
title_full_unstemmed |
Evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation |
title_sort |
evaluation of a contra-rotating flux-modulated machine featured with dual flux-modulation for wind power generation |
publishDate |
2022 |
url |
https://hdl.handle.net/10356/156218 |
_version_ |
1731235732524105728 |