Analytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting
Halbach permanent magnet (PM) array has attracted tremendous research attention in the development of electromagnetic generators for its unique properties. This paper has proposed a generalized analytical model for linear generators. The slotted stator pole-shifting and implementation of Halbach arr...
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Online Access: | http://dx.doi.org/10.1063/1.5006633 |
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doaj-86d8d194ba2340eeacf26ac48a3a0b7b2020-11-25T00:26:39ZengAIP Publishing LLCAIP Advances2158-32262018-05-0185056615056615-710.1063/1.5006633095892ADVAnalytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvestingYimin Tan0Kejian Lin1Jean W. Zu2Sea Electric Energy Inc., Mississauga, ON L5M5K5, CanadaUniversity of Toronto, Toronto, ON M5S3G8, CanadaUniversity of Toronto, Toronto, ON M5S3G8, CanadaHalbach permanent magnet (PM) array has attracted tremendous research attention in the development of electromagnetic generators for its unique properties. This paper has proposed a generalized analytical model for linear generators. The slotted stator pole-shifting and implementation of Halbach array have been combined for the first time. Initially, the magnetization components of the Halbach array have been determined using Fourier decomposition. Then, based on the magnetic scalar potential method, the magnetic field distribution has been derived employing specially treated boundary conditions. FEM analysis has been conducted to verify the analytical model. A slotted linear PM generator with Halbach PM has been constructed to validate the model and further improved using piece-wise springs to trigger full range reciprocating motion. A dynamic model has been developed to characterize the dynamic behavior of the slider. This analytical method provides an effective tool in development and optimization of Halbach PM generator. The experimental results indicate that piece-wise springs can be employed to improve generator performance under low excitation frequency.http://dx.doi.org/10.1063/1.5006633 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yimin Tan Kejian Lin Jean W. Zu |
spellingShingle |
Yimin Tan Kejian Lin Jean W. Zu Analytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting AIP Advances |
author_facet |
Yimin Tan Kejian Lin Jean W. Zu |
author_sort |
Yimin Tan |
title |
Analytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting |
title_short |
Analytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting |
title_full |
Analytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting |
title_fullStr |
Analytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting |
title_full_unstemmed |
Analytical modelling of Halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting |
title_sort |
analytical modelling of halbach linear generator incorporating pole shifting and piece-wise spring for ocean wave energy harvesting |
publisher |
AIP Publishing LLC |
series |
AIP Advances |
issn |
2158-3226 |
publishDate |
2018-05-01 |
description |
Halbach permanent magnet (PM) array has attracted tremendous research attention in the development of electromagnetic generators for its unique properties. This paper has proposed a generalized analytical model for linear generators. The slotted stator pole-shifting and implementation of Halbach array have been combined for the first time. Initially, the magnetization components of the Halbach array have been determined using Fourier decomposition. Then, based on the magnetic scalar potential method, the magnetic field distribution has been derived employing specially treated boundary conditions. FEM analysis has been conducted to verify the analytical model. A slotted linear PM generator with Halbach PM has been constructed to validate the model and further improved using piece-wise springs to trigger full range reciprocating motion. A dynamic model has been developed to characterize the dynamic behavior of the slider. This analytical method provides an effective tool in development and optimization of Halbach PM generator. The experimental results indicate that piece-wise springs can be employed to improve generator performance under low excitation frequency. |
url |
http://dx.doi.org/10.1063/1.5006633 |
work_keys_str_mv |
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