Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield

In this paper we consider wind energy generators as tall structures, thus the reflections of the current of a direct lightning strike, at various interfaces, have been included in the computational model. A significant effect of such reflections on the voltage distribution has been observed thus, in...

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Main Authors: Ahmed, Rebaz Jamal, Gomes, Chandima, Kadir, Zainal, Izadi, Mehdi
Format: Article
Language:English
Published: American Scientific Publishers 2016
Online Access:http://psasir.upm.edu.my/id/eprint/53238/1/Voltage%20distribution%20of%20a%20wind%20turbine%20transformer%20under%20direct%20lightning%20strike%20effects%20of%20the%20grounding%20of%20cable%20shield.pdf
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author Ahmed, Rebaz Jamal
Gomes, Chandima
Kadir, Zainal
Izadi, Mehdi
author_facet Ahmed, Rebaz Jamal
Gomes, Chandima
Kadir, Zainal
Izadi, Mehdi
author_sort Ahmed, Rebaz Jamal
collection UPM
description In this paper we consider wind energy generators as tall structures, thus the reflections of the current of a direct lightning strike, at various interfaces, have been included in the computational model. A significant effect of such reflections on the voltage distribution has been observed thus, inclusion of the reflections in the computation model has been justified. The study focuses on over voltage at critical locations that have been reported in the literature as having high probability of lightning damage. All parts related to the power generation in a wind turbine, including the step up transformer are modeled by lumped parameters using the Matlab/Simulink software. The transient response is obtained by applying the lightning impulse current to the equivalent circuit under several values of grounding resistance and several cable sheath grounding methods with different lightning strike waveforms. The results show that the location of the cable shield grounding and the grounding resistance values have significant influence on the produced over voltage waveforms at the input and output of transformer terminals. Appropriate surge protection devices for avoiding dangerous over voltage are proposed to reduce harmful effects.
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spelling upm.eprints-532382017-10-18T22:37:28Z http://psasir.upm.edu.my/id/eprint/53238/ Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield Ahmed, Rebaz Jamal Gomes, Chandima Kadir, Zainal Izadi, Mehdi In this paper we consider wind energy generators as tall structures, thus the reflections of the current of a direct lightning strike, at various interfaces, have been included in the computational model. A significant effect of such reflections on the voltage distribution has been observed thus, inclusion of the reflections in the computation model has been justified. The study focuses on over voltage at critical locations that have been reported in the literature as having high probability of lightning damage. All parts related to the power generation in a wind turbine, including the step up transformer are modeled by lumped parameters using the Matlab/Simulink software. The transient response is obtained by applying the lightning impulse current to the equivalent circuit under several values of grounding resistance and several cable sheath grounding methods with different lightning strike waveforms. The results show that the location of the cable shield grounding and the grounding resistance values have significant influence on the produced over voltage waveforms at the input and output of transformer terminals. Appropriate surge protection devices for avoiding dangerous over voltage are proposed to reduce harmful effects. American Scientific Publishers 2016 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/53238/1/Voltage%20distribution%20of%20a%20wind%20turbine%20transformer%20under%20direct%20lightning%20strike%20effects%20of%20the%20grounding%20of%20cable%20shield.pdf Ahmed, Rebaz Jamal and Gomes, Chandima and Kadir, Zainal and Izadi, Mehdi (2016) Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield. Advanced Science Letters, 22 (7). pp. 1800-1804. ISSN 1936-6612; ESSN: 1936-7317 http://www.aspbs.com/science.htm 10.1166/asl.2016.7028
spellingShingle Ahmed, Rebaz Jamal
Gomes, Chandima
Kadir, Zainal
Izadi, Mehdi
Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield
title Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield
title_full Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield
title_fullStr Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield
title_full_unstemmed Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield
title_short Voltage distribution of a wind turbine transformer under direct lightning strike: effects of the grounding of cable shield
title_sort voltage distribution of a wind turbine transformer under direct lightning strike effects of the grounding of cable shield
url http://psasir.upm.edu.my/id/eprint/53238/1/Voltage%20distribution%20of%20a%20wind%20turbine%20transformer%20under%20direct%20lightning%20strike%20effects%20of%20the%20grounding%20of%20cable%20shield.pdf
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AT kadirzainal voltagedistributionofawindturbinetransformerunderdirectlightningstrikeeffectsofthegroundingofcableshield
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