Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind Farms

Renewable energy systems are tending to become more and more present in the energy market and wind power has already proven its potential. Wind parks of thousands of MW are planned to be place into sea faraway from the mainland. Appropriate transmission systems should be designed in order to be abl...

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Main Authors: Mircea Viorel DRAGAN, Cristina Madalina DRAGAN, Crina Violeta DRAGAN, Doru HANGANU
Format: Article
Language:English
Published: Galati University Press 2009-11-01
Series:The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science
Subjects:
Online Access:https://www.gup.ugal.ro/ugaljournals/index.php/mms/article/view/3054
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spelling doaj-93e1bf60de7f4d2e83892d9890862cec2021-07-02T18:31:46ZengGalati University PressThe Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science2668-47482668-47562009-11-013223054Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind FarmsMircea Viorel DRAGAN0Cristina Madalina DRAGAN1Crina Violeta DRAGAN2Doru HANGANU3"Dunarea de Jos" University of Galati, Romania"Dunarea de Jos" University of Galati, Romania"Dunarea de Jos" University of Galati, Romania"Dunarea de Jos" University of Galati, Romania Renewable energy systems are tending to become more and more present in the energy market and wind power has already proven its potential. Wind parks of thousands of MW are planned to be place into sea faraway from the mainland. Appropriate transmission systems should be designed in order to be able to handle a significant amount of power with high efficiency and to be economically competitive. This paper discusses a Multiterminal DC connection, based on VSC technology, between one offshore wind farm and two different grids. The main focus was on developing the control strategy for connecting these three systems via DC connection. The modelling and designing of the WF components, of the power converters, of the DC system components and of all the controllers played a major role in developing a simulation platform for future studies. The proposed concept may enable integration of large offshore wind farms at considerable distances. Experimental verifications follow the theoretical investigations in order to prove the reability of the modelled system for different test scenarios. https://www.gup.ugal.ro/ugaljournals/index.php/mms/article/view/3054multiterminal DC power wind farmmodellingsimulationPower Factory DIgSILENT
collection DOAJ
language English
format Article
sources DOAJ
author Mircea Viorel DRAGAN
Cristina Madalina DRAGAN
Crina Violeta DRAGAN
Doru HANGANU
spellingShingle Mircea Viorel DRAGAN
Cristina Madalina DRAGAN
Crina Violeta DRAGAN
Doru HANGANU
Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind Farms
The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science
multiterminal DC power wind farm
modelling
simulation
Power Factory DIgSILENT
author_facet Mircea Viorel DRAGAN
Cristina Madalina DRAGAN
Crina Violeta DRAGAN
Doru HANGANU
author_sort Mircea Viorel DRAGAN
title Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind Farms
title_short Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind Farms
title_full Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind Farms
title_fullStr Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind Farms
title_full_unstemmed Modelling Operation and Control of Multiterminal DC Conection for Offshore Wind Farms
title_sort modelling operation and control of multiterminal dc conection for offshore wind farms
publisher Galati University Press
series The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science
issn 2668-4748
2668-4756
publishDate 2009-11-01
description Renewable energy systems are tending to become more and more present in the energy market and wind power has already proven its potential. Wind parks of thousands of MW are planned to be place into sea faraway from the mainland. Appropriate transmission systems should be designed in order to be able to handle a significant amount of power with high efficiency and to be economically competitive. This paper discusses a Multiterminal DC connection, based on VSC technology, between one offshore wind farm and two different grids. The main focus was on developing the control strategy for connecting these three systems via DC connection. The modelling and designing of the WF components, of the power converters, of the DC system components and of all the controllers played a major role in developing a simulation platform for future studies. The proposed concept may enable integration of large offshore wind farms at considerable distances. Experimental verifications follow the theoretical investigations in order to prove the reability of the modelled system for different test scenarios.
topic multiterminal DC power wind farm
modelling
simulation
Power Factory DIgSILENT
url https://www.gup.ugal.ro/ugaljournals/index.php/mms/article/view/3054
work_keys_str_mv AT mirceavioreldragan modellingoperationandcontrolofmultiterminaldcconectionforoffshorewindfarms
AT cristinamadalinadragan modellingoperationandcontrolofmultiterminaldcconectionforoffshorewindfarms
AT crinavioletadragan modellingoperationandcontrolofmultiterminaldcconectionforoffshorewindfarms
AT doruhanganu modellingoperationandcontrolofmultiterminaldcconectionforoffshorewindfarms
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