Design and modelling of generator for wave energy conversion system in Malaysia
This paper presents the design and modelling of generator for wave energy conversion system in Malaysia. This paper aims to identify the most promising topology to be used and to propose initial designs of the generator. Literature review on the previous technologies, power take-offs and linear gene...
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UK Simulation Society
2017
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my.utp.eprints.196732018-04-20T07:28:25Z Design and modelling of generator for wave energy conversion system in Malaysia Zamri, N.A.M. Ibrahim, T. Nor, N.M. This paper presents the design and modelling of generator for wave energy conversion system in Malaysia. This paper aims to identify the most promising topology to be used and to propose initial designs of the generator. Literature review on the previous technologies, power take-offs and linear generator have been completed and from the review, the criteria for the proposed generator designs are acquired. Two designs have been proposed in which one of the designs utilizes alternate slot winding concept. Both of the designs are simulated using Finite Element software, Ansys Maxwell. The preliminary results of flux distribution, air gap flux density, flux linkage and induced back EMF are obtained. From the simulation results, air gap flux density of both designs is within the expected range. It is also found that by implementing alternate slot winding concept, even though the total number of turn is the same, the induced back EMF produces is slightly lower than the full slot winding. © 2017, UK Simulation Society. All rights reserved. UK Simulation Society 2017 Article PeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85017193630&doi=10.5013%2fIJSSST.a.17.41.23&partnerID=40&md5=22d7979470d6667b6cf3816308d77773 Zamri, N.A.M. and Ibrahim, T. and Nor, N.M. (2017) Design and modelling of generator for wave energy conversion system in Malaysia. International Journal of Simulation: Systems, Science and Technology, 17 (41). 23.1-23.6. http://eprints.utp.edu.my/19673/ |
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This paper presents the design and modelling of generator for wave energy conversion system in Malaysia. This paper aims to identify the most promising topology to be used and to propose initial designs of the generator. Literature review on the previous technologies, power take-offs and linear generator have been completed and from the review, the criteria for the proposed generator designs are acquired. Two designs have been proposed in which one of the designs utilizes alternate slot winding concept. Both of the designs are simulated using Finite Element software, Ansys Maxwell. The preliminary results of flux distribution, air gap flux density, flux linkage and induced back EMF are obtained. From the simulation results, air gap flux density of both designs is within the expected range. It is also found that by implementing alternate slot winding concept, even though the total number of turn is the same, the induced back EMF produces is slightly lower than the full slot winding. © 2017, UK Simulation Society. All rights reserved. |
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Article |
author |
Zamri, N.A.M. Ibrahim, T. Nor, N.M. |
spellingShingle |
Zamri, N.A.M. Ibrahim, T. Nor, N.M. Design and modelling of generator for wave energy conversion system in Malaysia |
author_facet |
Zamri, N.A.M. Ibrahim, T. Nor, N.M. |
author_sort |
Zamri, N.A.M. |
title |
Design and modelling of generator for wave energy conversion system in Malaysia |
title_short |
Design and modelling of generator for wave energy conversion system in Malaysia |
title_full |
Design and modelling of generator for wave energy conversion system in Malaysia |
title_fullStr |
Design and modelling of generator for wave energy conversion system in Malaysia |
title_full_unstemmed |
Design and modelling of generator for wave energy conversion system in Malaysia |
title_sort |
design and modelling of generator for wave energy conversion system in malaysia |
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UK Simulation Society |
publishDate |
2017 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85017193630&doi=10.5013%2fIJSSST.a.17.41.23&partnerID=40&md5=22d7979470d6667b6cf3816308d77773 http://eprints.utp.edu.my/19673/ |
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