Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System
| Main Author: | |
|---|---|
| Publication Date: | 2025 |
| Other Authors: | , , , |
| Format: | Article |
| Language: | eng |
| Source: | Eletrônica de Potência (Online) |
| Download full: | https://journal.sobraep.org.br/index.php/rep/article/view/1018 |
Summary: | The expansion of DC microgrids has prompted investigations into wind energy systems to harness the benefits of this configuration. Therefore, this study aims to analyze and compare the performances of predictive current control (PCC) and predictive flux and torque control (PTC) applied to a doubly-fed induction generator which has its stator windings connected to a DC microgrid by means of a diode bridge. This system is commonly known as DFIG-DC. The system's performance was evaluated in terms of electromagnetic torque ripple, rotor flux ripple, and current distortion across a range of operating speeds. Although PCC and PTC applied to DFIG-DC have been discussed in previous works, a systematic comparison between them lacks in the literature, which is the main contribution of this paper. In addition, this work discusses the robustness of both methods under parametric errors of stator and rotor resistances, and magnetizing inductance, which has not been approached before. |
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Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC SystemDC microgriddoubly-fed induction machinepredictive current controlpredictive flux and torque controlThe expansion of DC microgrids has prompted investigations into wind energy systems to harness the benefits of this configuration. Therefore, this study aims to analyze and compare the performances of predictive current control (PCC) and predictive flux and torque control (PTC) applied to a doubly-fed induction generator which has its stator windings connected to a DC microgrid by means of a diode bridge. This system is commonly known as DFIG-DC. The system's performance was evaluated in terms of electromagnetic torque ripple, rotor flux ripple, and current distortion across a range of operating speeds. Although PCC and PTC applied to DFIG-DC have been discussed in previous works, a systematic comparison between them lacks in the literature, which is the main contribution of this paper. In addition, this work discusses the robustness of both methods under parametric errors of stator and rotor resistances, and magnetizing inductance, which has not been approached before. SOBRAEP2025-04-07info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://journal.sobraep.org.br/index.php/rep/article/view/101810.18618/REP.e202530Eletrônica de Potência; Vol. 30 (2025); e202530Revista Eletrônica de Potência; v. 30 (2025); e2025301984-557X1414-8862reponame:Eletrônica de Potência (Online)instname:Associação Brasileira de Eletrônica de Potência (SOBRAEP)instacron:SOBRAEPenghttps://journal.sobraep.org.br/index.php/rep/article/view/1018/913Copyright (c) 2025 Lucas F. M. de Lucena, Victor F. M. B. Melo, Nady Rocha, Ruben da C. Ferreira, Marco Riverainfo:eu-repo/semantics/openAccessde Lucena, Lucas F. M.Melo, Victor F. M. B.Rocha, NadyFerreira, Ruben da C.Rivera, Marco2025-04-26T22:31:59Zoai:ojs2.journal.sobraep.org.br:article/1018Revistahttps://journal.sobraep.org.br/index.php/rep/ONGhttps://journal.sobraep.org.br/index.php/rep/oaieditor@sobraep.org.br || presidente@sobraep.org.br || renatasousa@utfpr.edu.br1984-557X1414-8862opendoar:2025-04-26T22:31:59Eletrônica de Potência (Online) - Associação Brasileira de Eletrônica de Potência (SOBRAEP)false |
| dc.title.none.fl_str_mv |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System |
| title |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System |
| spellingShingle |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System de Lucena, Lucas F. M. DC microgrid doubly-fed induction machine predictive current control predictive flux and torque control |
| title_short |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System |
| title_full |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System |
| title_fullStr |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System |
| title_full_unstemmed |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System |
| title_sort |
Performance Analysis and Comparison Between Predictive Current and Predictive Torque Control Applied to a DFIG-DC System |
| author |
de Lucena, Lucas F. M. |
| author_facet |
de Lucena, Lucas F. M. Melo, Victor F. M. B. Rocha, Nady Ferreira, Ruben da C. Rivera, Marco |
| author_role |
author |
| author2 |
Melo, Victor F. M. B. Rocha, Nady Ferreira, Ruben da C. Rivera, Marco |
| author2_role |
author author author author |
| dc.contributor.author.fl_str_mv |
de Lucena, Lucas F. M. Melo, Victor F. M. B. Rocha, Nady Ferreira, Ruben da C. Rivera, Marco |
| dc.subject.por.fl_str_mv |
DC microgrid doubly-fed induction machine predictive current control predictive flux and torque control |
| topic |
DC microgrid doubly-fed induction machine predictive current control predictive flux and torque control |
| description |
The expansion of DC microgrids has prompted investigations into wind energy systems to harness the benefits of this configuration. Therefore, this study aims to analyze and compare the performances of predictive current control (PCC) and predictive flux and torque control (PTC) applied to a doubly-fed induction generator which has its stator windings connected to a DC microgrid by means of a diode bridge. This system is commonly known as DFIG-DC. The system's performance was evaluated in terms of electromagnetic torque ripple, rotor flux ripple, and current distortion across a range of operating speeds. Although PCC and PTC applied to DFIG-DC have been discussed in previous works, a systematic comparison between them lacks in the literature, which is the main contribution of this paper. In addition, this work discusses the robustness of both methods under parametric errors of stator and rotor resistances, and magnetizing inductance, which has not been approached before. |
| publishDate |
2025 |
| dc.date.none.fl_str_mv |
2025-04-07 |
| dc.type.driver.fl_str_mv |
info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion |
| format |
article |
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publishedVersion |
| dc.identifier.uri.fl_str_mv |
https://journal.sobraep.org.br/index.php/rep/article/view/1018 10.18618/REP.e202530 |
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https://journal.sobraep.org.br/index.php/rep/article/view/1018 |
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10.18618/REP.e202530 |
| dc.language.iso.fl_str_mv |
eng |
| language |
eng |
| dc.relation.none.fl_str_mv |
https://journal.sobraep.org.br/index.php/rep/article/view/1018/913 |
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info:eu-repo/semantics/openAccess |
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openAccess |
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application/pdf |
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SOBRAEP |
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SOBRAEP |
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Eletrônica de Potência; Vol. 30 (2025); e202530 Revista Eletrônica de Potência; v. 30 (2025); e202530 1984-557X 1414-8862 reponame:Eletrônica de Potência (Online) instname:Associação Brasileira de Eletrônica de Potência (SOBRAEP) instacron:SOBRAEP |
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SOBRAEP |
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Eletrônica de Potência (Online) |
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Eletrônica de Potência (Online) |
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Eletrônica de Potência (Online) - Associação Brasileira de Eletrônica de Potência (SOBRAEP) |
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editor@sobraep.org.br || presidente@sobraep.org.br || renatasousa@utfpr.edu.br |
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