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Voltage Behavior in the Switched Reluctance
Generator Due to Different Speed Profiles Aimed at Use in Small
Wind Turbines
R. Fidelis, G. Viajante, L. Coutinho, E.
Nery, F. Mendonça, D. Andrade, M. Escobar and L. Miranda
2017/04/25
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Abstrac
This paper presents the implementation of
an experimental platform for the study and drive the switched reluctance
machine (SRM) as generator. Analyzing the behavior of the generated voltage
at SRM at different speeds profiles. The driving was done through a data
acquisition and processing system of high performance and low cost (DSP
/ FPGA). The results are shown and discussed.
| Published in: Renewable Energy
& Power Quality Journal (RE&PQJ, Nº. 15) |
| Pages: 438-442 |
Date of Publication: 2017/04/25 |
| ISSN: 2172-038X |
Date of Current Version: |
| REF: 348-17 |
Issue Date: April 2017 |
| DOI:10.24084/repqj15.348 |
Publisher: EA4EPQ |
Authors and affiliations
R. Fidelis(2), G. Viajante(1), L. Coutinho(2), E. Nery(1),
F. Mendonça(1), D. Andrade(2), M. Escobar(1) and L. Miranda(1)
1. Federal Institute of Education, Science and Technology Goiás,
NUPSE. Campus of Itumbiara. Goiás (Brazil)
2. Electric Drives Laboratory, Federal University of Uberlândia.
Santa Mônica Campus, Uberlândia-MG, Brasil
Key word
Switched Reluctance Machine, Small wind Turbine, Generator.
References
[1] R. Fidelis, Development of an Experimental Platform
to Drive the Switched Reluctance Machine, ICREPQ, 2016, ISNN 2172-038.
[2] G. Viajante, Gerador a Relutância Variável em Conexão
com a Rede elétrica para Injeção de Potência
Ativa, in Proc. UFU2013, CDU:621.3.
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IEEE International Symposium on Industrial Eletronics, 2009, ISIE.
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Modeling Simulation, analysis and Control. A comprehensive Review,
International Journal of Computer Application, 2010, Vol. 1 N° 2.
[5] F. Ribeiro, L. Cabral, A. Fleury. A Switched Reluctance Generator
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[7] T. Miller, Eletronic Control of Switching Reluctance Machine,
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[8] A. Fleury, Modelagem, Construção, Testes e Análise
de Desempenho de um Gerador a Relutância Chaveado. UFU 2008,
p258.
[9] A. Coelho, M. Aguiar, Simulação, Projeto e Teste
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USP 2001.
[10] F. Blaabjerg, Power Eletronics in Wind Turbine System,
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