Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand
The increasing amount of wind power generation in Thailand power systems requires stability analysis considering interaction between wind-farms and transmission systems. Dynamics introduced by dispersed wind generators at the distribution level can usually be neglected. However, large wind farms hav...
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th-cmuir.6653943832-507612018-09-04T04:45:16Z Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand K. Daunghom S. Premrudeepreechacharn Energy The increasing amount of wind power generation in Thailand power systems requires stability analysis considering interaction between wind-farms and transmission systems. Dynamics introduced by dispersed wind generators at the distribution level can usually be neglected. However, large wind farms have a considerable influence to power system dynamics and must definitely be considered for analyzing power system dynamics. For this purpose, a detailed dynamic model of fully enclosed squirrel cage induction generator with gearbox (full-scale power electronics converters) of a 2.3 MW wind turbine with has been implemented using the modeling environment of the simulation software DIgSILENT PowerFactory. For investigating grid compatibility aspects of this wind generator concept, a model of a 96.6 MW wind farm, with typical layout, based on 42 wind turbines of the 2.3 MW-class has been analyzed. This paper is focusing on transient stability and fault ride through capability when the grid voltage has dropped to a very low value. © 2010 IEEE. 2018-09-04T04:45:16Z 2018-09-04T04:45:16Z 2010-07-26 Conference Proceeding 2-s2.0-77954765994 10.1109/TDC.2010.5484266 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=77954765994&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/50761 |
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Energy K. Daunghom S. Premrudeepreechacharn Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand |
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The increasing amount of wind power generation in Thailand power systems requires stability analysis considering interaction between wind-farms and transmission systems. Dynamics introduced by dispersed wind generators at the distribution level can usually be neglected. However, large wind farms have a considerable influence to power system dynamics and must definitely be considered for analyzing power system dynamics. For this purpose, a detailed dynamic model of fully enclosed squirrel cage induction generator with gearbox (full-scale power electronics converters) of a 2.3 MW wind turbine with has been implemented using the modeling environment of the simulation software DIgSILENT PowerFactory. For investigating grid compatibility aspects of this wind generator concept, a model of a 96.6 MW wind farm, with typical layout, based on 42 wind turbines of the 2.3 MW-class has been analyzed. This paper is focusing on transient stability and fault ride through capability when the grid voltage has dropped to a very low value. © 2010 IEEE. |
format |
Conference Proceeding |
author |
K. Daunghom S. Premrudeepreechacharn |
author_facet |
K. Daunghom S. Premrudeepreechacharn |
author_sort |
K. Daunghom |
title |
Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand |
title_short |
Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand |
title_full |
Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand |
title_fullStr |
Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand |
title_full_unstemmed |
Fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in Thailand |
title_sort |
fault ride-through of fully enclosed squirrel-cage induction generators for wind farms in thailand |
publishDate |
2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=77954765994&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/50761 |
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