Simulation of an optimal design of permanent magnet direct-drive wind turbine generator

Permanent Magnet Direct Drive (PMDD) configuration is seen to provide more advantages compared to its gearbox counterpart, namely absence of gears, less maintenance, higher efficiency, and growing research field. However, PMDD configuration generally has a big ring size and expensive construction co...

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Main Authors: Tapiador, Jed I., Gan Lim, Laurence A., Augusto, Gerardo L.
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Published: Animo Repository 2017
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/3447
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4449/type/native/viewcontent/HNICEM.2017.8269541
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-44492021-09-08T08:42:24Z Simulation of an optimal design of permanent magnet direct-drive wind turbine generator Tapiador, Jed I. Gan Lim, Laurence A. Augusto, Gerardo L. Permanent Magnet Direct Drive (PMDD) configuration is seen to provide more advantages compared to its gearbox counterpart, namely absence of gears, less maintenance, higher efficiency, and growing research field. However, PMDD configuration generally has a big ring size and expensive construction cost. To potentially reduce the cost of PMDD, various research designs were investigated, including reduction of weight, lessen of material usage, and simulations on electrical losses. However, as of this time of writing, there has been no research design on the placement of permanent magnets (PM) for optimal energy generation. Thus, this study aims to make an optimal design of a PMDD ring by varying three main parameters, namely in-between magnet clearance, rotor-stator distance, and rotational speed. SolidWorks was used to design the model, ANSYS Fluent was used to simulate the various design combinations, and JMP software was used to analyse the data statistically. Results showed that amongst the three parameters, only the rotor-stator distance significantly influenced the power output of the simulated equipment. Further investigation can be done on the variation of magnet numbers, increase combinations, and investigation of power losses. © 2017 IEEE. 2017-07-02T07:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/3447 info:doi/10.1109/HNICEM.2017.8269541 https://animorepository.dlsu.edu.ph/context/faculty_research/article/4449/type/native/viewcontent/HNICEM.2017.8269541 Faculty Research Work Animo Repository Horizontal axis wind turbines Permanent magnets Wind power Wind turbines—Design and construction Mechanical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Horizontal axis wind turbines
Permanent magnets
Wind power
Wind turbines—Design and construction
Mechanical Engineering
spellingShingle Horizontal axis wind turbines
Permanent magnets
Wind power
Wind turbines—Design and construction
Mechanical Engineering
Tapiador, Jed I.
Gan Lim, Laurence A.
Augusto, Gerardo L.
Simulation of an optimal design of permanent magnet direct-drive wind turbine generator
description Permanent Magnet Direct Drive (PMDD) configuration is seen to provide more advantages compared to its gearbox counterpart, namely absence of gears, less maintenance, higher efficiency, and growing research field. However, PMDD configuration generally has a big ring size and expensive construction cost. To potentially reduce the cost of PMDD, various research designs were investigated, including reduction of weight, lessen of material usage, and simulations on electrical losses. However, as of this time of writing, there has been no research design on the placement of permanent magnets (PM) for optimal energy generation. Thus, this study aims to make an optimal design of a PMDD ring by varying three main parameters, namely in-between magnet clearance, rotor-stator distance, and rotational speed. SolidWorks was used to design the model, ANSYS Fluent was used to simulate the various design combinations, and JMP software was used to analyse the data statistically. Results showed that amongst the three parameters, only the rotor-stator distance significantly influenced the power output of the simulated equipment. Further investigation can be done on the variation of magnet numbers, increase combinations, and investigation of power losses. © 2017 IEEE.
format text
author Tapiador, Jed I.
Gan Lim, Laurence A.
Augusto, Gerardo L.
author_facet Tapiador, Jed I.
Gan Lim, Laurence A.
Augusto, Gerardo L.
author_sort Tapiador, Jed I.
title Simulation of an optimal design of permanent magnet direct-drive wind turbine generator
title_short Simulation of an optimal design of permanent magnet direct-drive wind turbine generator
title_full Simulation of an optimal design of permanent magnet direct-drive wind turbine generator
title_fullStr Simulation of an optimal design of permanent magnet direct-drive wind turbine generator
title_full_unstemmed Simulation of an optimal design of permanent magnet direct-drive wind turbine generator
title_sort simulation of an optimal design of permanent magnet direct-drive wind turbine generator
publisher Animo Repository
publishDate 2017
url https://animorepository.dlsu.edu.ph/faculty_research/3447
https://animorepository.dlsu.edu.ph/context/faculty_research/article/4449/type/native/viewcontent/HNICEM.2017.8269541
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