Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application

This paper presents the design and analysis of electromagnetic characteristics of a five phase permanent magnet synchronous generator for direct drive wind energy conversion system (WECS). In this study, simple and accurate Dynamic Reluctance Network Modeling is used for design and optimization of g...

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Main Authors: Raja Ram Kumar, S.K. Singh, R.K. Srivastava, R.K. Saket
Format: Article
Language:English
Published: Elsevier 2020-06-01
Series:Ain Shams Engineering Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2090447919301261
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spelling doaj-89c7942ffa804c8db80ef75984fa9f9d2021-06-02T11:43:37ZengElsevierAin Shams Engineering Journal2090-44792020-06-01112377387Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power applicationRaja Ram Kumar0S.K. Singh1R.K. Srivastava2R.K. Saket3Indian Institute of Technology (Banaras Hindu University), Varanasi, UP, IndiaIndian Institute of Technology (Banaras Hindu University), Varanasi, UP, IndiaIndian Institute of Technology (Banaras Hindu University), Varanasi, UP, IndiaCorresponding author.; Indian Institute of Technology (Banaras Hindu University), Varanasi, UP, IndiaThis paper presents the design and analysis of electromagnetic characteristics of a five phase permanent magnet synchronous generator for direct drive wind energy conversion system (WECS). In this study, simple and accurate Dynamic Reluctance Network Modeling is used for design and optimization of generator. The anisotropic structure of stator and rotor for the accurate prediction of flux distribution in the air gap and electromagnetic performance is accounted by the dynamic variation of air gap reluctance in an electrical period. This model considers the leakage flux paths for machine design optimization to achieve better performance. In this context, three permanent magnet (PM) materials namely NdFeB, SmCo and ferrite are considered to evaluate the generated voltage. The dimensions of these permanent magnets are varied and performance under normal and saturated core condition is evaluated. A prototype is developed in the machine laboratory of the IIT(BHU) Varanasi (India) and results obtained in accordance with Finite Element Method.http://www.sciencedirect.com/science/article/pii/S2090447919301261Wind powerFive phasePermanent magnet synchronous generatorDynamic reluctance network modelingFinite element method
collection DOAJ
language English
format Article
sources DOAJ
author Raja Ram Kumar
S.K. Singh
R.K. Srivastava
R.K. Saket
spellingShingle Raja Ram Kumar
S.K. Singh
R.K. Srivastava
R.K. Saket
Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application
Ain Shams Engineering Journal
Wind power
Five phase
Permanent magnet synchronous generator
Dynamic reluctance network modeling
Finite element method
author_facet Raja Ram Kumar
S.K. Singh
R.K. Srivastava
R.K. Saket
author_sort Raja Ram Kumar
title Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application
title_short Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application
title_full Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application
title_fullStr Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application
title_full_unstemmed Dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application
title_sort dynamic reluctance air gap modeling and experimental evaluation of electromagnetic characteristics of five-phase permanent magnet synchronous generator for wind power application
publisher Elsevier
series Ain Shams Engineering Journal
issn 2090-4479
publishDate 2020-06-01
description This paper presents the design and analysis of electromagnetic characteristics of a five phase permanent magnet synchronous generator for direct drive wind energy conversion system (WECS). In this study, simple and accurate Dynamic Reluctance Network Modeling is used for design and optimization of generator. The anisotropic structure of stator and rotor for the accurate prediction of flux distribution in the air gap and electromagnetic performance is accounted by the dynamic variation of air gap reluctance in an electrical period. This model considers the leakage flux paths for machine design optimization to achieve better performance. In this context, three permanent magnet (PM) materials namely NdFeB, SmCo and ferrite are considered to evaluate the generated voltage. The dimensions of these permanent magnets are varied and performance under normal and saturated core condition is evaluated. A prototype is developed in the machine laboratory of the IIT(BHU) Varanasi (India) and results obtained in accordance with Finite Element Method.
topic Wind power
Five phase
Permanent magnet synchronous generator
Dynamic reluctance network modeling
Finite element method
url http://www.sciencedirect.com/science/article/pii/S2090447919301261
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AT sksingh dynamicreluctanceairgapmodelingandexperimentalevaluationofelectromagneticcharacteristicsoffivephasepermanentmagnetsynchronousgeneratorforwindpowerapplication
AT rksrivastava dynamicreluctanceairgapmodelingandexperimentalevaluationofelectromagneticcharacteristicsoffivephasepermanentmagnetsynchronousgeneratorforwindpowerapplication
AT rksaket dynamicreluctanceairgapmodelingandexperimentalevaluationofelectromagneticcharacteristicsoffivephasepermanentmagnetsynchronousgeneratorforwindpowerapplication
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