The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Autoren

  • Muhammad S. Alamsyah
  • Francinei L. Vieira
  • Heyno Garbe
  • Sebastian Koj

Externe Organisationen

  • IAV GmbH
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Titel des Sammelwerks2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021
Herausgeber (Verlag)Institute of Electrical and Electronics Engineers Inc.
Seiten430-433
Seitenumfang4
ISBN (elektronisch)9781665448888
ISBN (Print)978-1-6654-4889-5
PublikationsstatusVeröffentlicht - 26 Juli 2021
Veranstaltung2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe: EMC/SI/PI/EMC Europe 2021 - Raleigh, USA / Vereinigte Staaten
Dauer: 26 Juli 202120 Aug. 2021

Publikationsreihe

Name2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021

Abstract

The common-mode (CM) current phenomena is one of many problems in the EMC world due to the radiated magnetic field caused by it. A power transmission line with a delta-connection both generator and load normally do not have a connection to ground to establish a line for the return current. To determine the CM current, finding the stray capacitances to the ground is highly important because they are used as the return path for the CM current. In this paper, the investigation of predicting the CM current flowing through the stray capacitances will be done at a three-phase equivalent system of a wind turbine (WT). The wind turbine body is the place where the CM current flows, due to the stray capacitances between the power cables and the WT body around it. The CM current can be determined using the current magnitudes in a pointer-image method, which has a good agreement for CM current prediction and it might become a very useful tool applicable to measurements.

ASJC Scopus Sachgebiete

Zitieren

The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System. / Alamsyah, Muhammad S.; Vieira, Francinei L.; Garbe, Heyno et al.
2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021. Institute of Electrical and Electronics Engineers Inc., 2021. S. 430-433 (2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021).

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Alamsyah, MS, Vieira, FL, Garbe, H & Koj, S 2021, The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System. in 2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021. 2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021, Institute of Electrical and Electronics Engineers Inc., S. 430-433, 2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, Raleigh, USA / Vereinigte Staaten, 26 Juli 2021. https://doi.org/10.15488/11357, https://doi.org/10.1109/EMC/SI/PI/EMCEurope52599.2021.9559135
Alamsyah, M. S., Vieira, F. L., Garbe, H., & Koj, S. (2021). The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System. In 2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021 (S. 430-433). (2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.15488/11357, https://doi.org/10.1109/EMC/SI/PI/EMCEurope52599.2021.9559135
Alamsyah MS, Vieira FL, Garbe H, Koj S. The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System. in 2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021. Institute of Electrical and Electronics Engineers Inc. 2021. S. 430-433. (2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021). doi: 10.15488/11357, 10.1109/EMC/SI/PI/EMCEurope52599.2021.9559135
Alamsyah, Muhammad S. ; Vieira, Francinei L. ; Garbe, Heyno et al. / The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System. 2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021. Institute of Electrical and Electronics Engineers Inc., 2021. S. 430-433 (2021 Joint IEEE International Symposium on Electromagnetic Compatibility Signal and Power Integrity, and EMC Europe, EMC/SI/PI/EMC Europe 2021).
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title = "The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System",
abstract = "The common-mode (CM) current phenomena is one of many problems in the EMC world due to the radiated magnetic field caused by it. A power transmission line with a delta-connection both generator and load normally do not have a connection to ground to establish a line for the return current. To determine the CM current, finding the stray capacitances to the ground is highly important because they are used as the return path for the CM current. In this paper, the investigation of predicting the CM current flowing through the stray capacitances will be done at a three-phase equivalent system of a wind turbine (WT). The wind turbine body is the place where the CM current flows, due to the stray capacitances between the power cables and the WT body around it. The CM current can be determined using the current magnitudes in a pointer-image method, which has a good agreement for CM current prediction and it might become a very useful tool applicable to measurements.",
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T1 - The Effect of Stray Capacitance to the Common Mode Current on Three-Phase System

AU - Alamsyah, Muhammad S.

AU - Vieira, Francinei L.

AU - Garbe, Heyno

AU - Koj, Sebastian

N1 - Funding Information: This project has received funding from the European Union’s Horizon 2020 research and innovation program under the Marie Skłodowska-Curie grant agreement No 812753.

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N2 - The common-mode (CM) current phenomena is one of many problems in the EMC world due to the radiated magnetic field caused by it. A power transmission line with a delta-connection both generator and load normally do not have a connection to ground to establish a line for the return current. To determine the CM current, finding the stray capacitances to the ground is highly important because they are used as the return path for the CM current. In this paper, the investigation of predicting the CM current flowing through the stray capacitances will be done at a three-phase equivalent system of a wind turbine (WT). The wind turbine body is the place where the CM current flows, due to the stray capacitances between the power cables and the WT body around it. The CM current can be determined using the current magnitudes in a pointer-image method, which has a good agreement for CM current prediction and it might become a very useful tool applicable to measurements.

AB - The common-mode (CM) current phenomena is one of many problems in the EMC world due to the radiated magnetic field caused by it. A power transmission line with a delta-connection both generator and load normally do not have a connection to ground to establish a line for the return current. To determine the CM current, finding the stray capacitances to the ground is highly important because they are used as the return path for the CM current. In this paper, the investigation of predicting the CM current flowing through the stray capacitances will be done at a three-phase equivalent system of a wind turbine (WT). The wind turbine body is the place where the CM current flows, due to the stray capacitances between the power cables and the WT body around it. The CM current can be determined using the current magnitudes in a pointer-image method, which has a good agreement for CM current prediction and it might become a very useful tool applicable to measurements.

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