A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion Systems
This paper addresses the design and analysis of a voltage and frequency control (VFC) strategy for full converter (FC)-based wind energy conversion systems (WECSs) and its applicability for the supply of an isolated load. When supplying an isolated load, the role of the back-to-back converters in th...
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doaj-4eb74cf5665f4e0885480dc25cb2c73f2020-11-24T22:09:15ZengMDPI AGEnergies1996-10732018-02-0111347410.3390/en11030474en11030474A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion SystemsAndrés Peña Asensio0Santiago Arnaltes Gómez1Jose Luis Rodriguez-Amenedo2Manuel García Plaza3Joaquín Eloy-García Carrasco4Jaime Manuel Alonso-Martínez de las Morenas5Electrical Engineering Department, Carlos III University of Madrid, Av. de la Universidad 30, Leganés, 28911 Madrid, SpainElectrical Engineering Department, Carlos III University of Madrid, Av. de la Universidad 30, Leganés, 28911 Madrid, SpainElectrical Engineering Department, Carlos III University of Madrid, Av. de la Universidad 30, Leganés, 28911 Madrid, SpainElectrical Engineering Department, Carlos III University of Madrid, Av. de la Universidad 30, Leganés, 28911 Madrid, SpainElectrical Engineering Department, Carlos III University of Madrid, Av. de la Universidad 30, Leganés, 28911 Madrid, SpainElectrical Engineering Department, Carlos III University of Madrid, Av. de la Universidad 30, Leganés, 28911 Madrid, SpainThis paper addresses the design and analysis of a voltage and frequency control (VFC) strategy for full converter (FC)-based wind energy conversion systems (WECSs) and its applicability for the supply of an isolated load. When supplying an isolated load, the role of the back-to-back converters in the FC must change with respect to a grid-connected application. Voltage and frequency are established by the FC line side converter (LSC), while the generator side converter (GSC) is responsible for maintaining constant voltage in the DC link. Thus, the roles of the converters in the WECS are inverted. Under such control strategies, the LSC will automatically supply the load power and hence, in order to maintain a stable operation of the WECS, the wind turbine (WT) power must also be controlled in a load-following strategy. The proposed VFC is fully modelled and a stability analysis is performed. Then, the operation of the WECS under the proposed VFC is simulated and tested on a real-time test bench, demonstrating the performance of the VFC for the isolated operation of the WECS.http://www.mdpi.com/1996-1073/11/3/474wind energyfrequency regulationpermanent magnet synchronous generators (PMSGs)full converter (FC)voltage-sourced converterisolated operation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Andrés Peña Asensio Santiago Arnaltes Gómez Jose Luis Rodriguez-Amenedo Manuel García Plaza Joaquín Eloy-García Carrasco Jaime Manuel Alonso-Martínez de las Morenas |
spellingShingle |
Andrés Peña Asensio Santiago Arnaltes Gómez Jose Luis Rodriguez-Amenedo Manuel García Plaza Joaquín Eloy-García Carrasco Jaime Manuel Alonso-Martínez de las Morenas A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion Systems Energies wind energy frequency regulation permanent magnet synchronous generators (PMSGs) full converter (FC) voltage-sourced converter isolated operation |
author_facet |
Andrés Peña Asensio Santiago Arnaltes Gómez Jose Luis Rodriguez-Amenedo Manuel García Plaza Joaquín Eloy-García Carrasco Jaime Manuel Alonso-Martínez de las Morenas |
author_sort |
Andrés Peña Asensio |
title |
A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion Systems |
title_short |
A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion Systems |
title_full |
A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion Systems |
title_fullStr |
A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion Systems |
title_full_unstemmed |
A Voltage and Frequency Control Strategy for Stand-Alone Full Converter Wind Energy Conversion Systems |
title_sort |
voltage and frequency control strategy for stand-alone full converter wind energy conversion systems |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2018-02-01 |
description |
This paper addresses the design and analysis of a voltage and frequency control (VFC) strategy for full converter (FC)-based wind energy conversion systems (WECSs) and its applicability for the supply of an isolated load. When supplying an isolated load, the role of the back-to-back converters in the FC must change with respect to a grid-connected application. Voltage and frequency are established by the FC line side converter (LSC), while the generator side converter (GSC) is responsible for maintaining constant voltage in the DC link. Thus, the roles of the converters in the WECS are inverted. Under such control strategies, the LSC will automatically supply the load power and hence, in order to maintain a stable operation of the WECS, the wind turbine (WT) power must also be controlled in a load-following strategy. The proposed VFC is fully modelled and a stability analysis is performed. Then, the operation of the WECS under the proposed VFC is simulated and tested on a real-time test bench, demonstrating the performance of the VFC for the isolated operation of the WECS. |
topic |
wind energy frequency regulation permanent magnet synchronous generators (PMSGs) full converter (FC) voltage-sourced converter isolated operation |
url |
http://www.mdpi.com/1996-1073/11/3/474 |
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