An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system
© 2014 IEEE. This paper presents an implementation of the three-level back-to-back neutral-point-clamp voltage source converter based PMSG wind energy conversion system (WECS). The generator-side converter performs the maximum power point then tracks, integrates and optimizes control with the d-axis...
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th-cmuir.6653943832-543822018-09-04T10:15:21Z An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system K. Bunjongjit Y. Kumsuwan Y. Sriuthaisiriwong Computer Science Engineering © 2014 IEEE. This paper presents an implementation of the three-level back-to-back neutral-point-clamp voltage source converter based PMSG wind energy conversion system (WECS). The generator-side converter performs the maximum power point then tracks, integrates and optimizes control with the d-axis stator current control (ZDSC), while the grid-side converter regulates the dc-link voltage and reactive power to the gird via voltage oriented control (VOC). An even simple modified unipolar CB-PWM strategy for the three-level BTB NPC VSC is implemented to simplify the modulation algorithm. The simulation results are demonstrated to provide the performance and stability of the three-level BTB NPC VSC based-PMSG WECS in both the stand-alone and grid-connected conditions. 2018-09-04T10:12:40Z 2018-09-04T10:12:40Z 2015-01-01 Conference Proceeding 21593450 21593442 2-s2.0-84940520467 10.1109/TENCON.2014.7022341 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84940520467&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/54382 |
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Computer Science Engineering K. Bunjongjit Y. Kumsuwan Y. Sriuthaisiriwong An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system |
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© 2014 IEEE. This paper presents an implementation of the three-level back-to-back neutral-point-clamp voltage source converter based PMSG wind energy conversion system (WECS). The generator-side converter performs the maximum power point then tracks, integrates and optimizes control with the d-axis stator current control (ZDSC), while the grid-side converter regulates the dc-link voltage and reactive power to the gird via voltage oriented control (VOC). An even simple modified unipolar CB-PWM strategy for the three-level BTB NPC VSC is implemented to simplify the modulation algorithm. The simulation results are demonstrated to provide the performance and stability of the three-level BTB NPC VSC based-PMSG WECS in both the stand-alone and grid-connected conditions. |
format |
Conference Proceeding |
author |
K. Bunjongjit Y. Kumsuwan Y. Sriuthaisiriwong |
author_facet |
K. Bunjongjit Y. Kumsuwan Y. Sriuthaisiriwong |
author_sort |
K. Bunjongjit |
title |
An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system |
title_short |
An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system |
title_full |
An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system |
title_fullStr |
An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system |
title_full_unstemmed |
An implementation of three-level BTB NPC voltage source converter based-PMSG wind energy conversion system |
title_sort |
implementation of three-level btb npc voltage source converter based-pmsg wind energy conversion system |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84940520467&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/54382 |
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