Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines

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

Autoren

  • Jonas Henkenjohann
  • Jan Andresen
  • Axel Mertens
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Titel des Sammelwerks24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe
Herausgeber (Verlag)Institute of Electrical and Electronics Engineers Inc.
Seitenumfang8
ISBN (elektronisch)9789075815399
ISBN (Print)978-1-6654-8700-9
PublikationsstatusVeröffentlicht - 2022
Veranstaltung24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe - Hanover, Deutschland
Dauer: 5 Sept. 20229 Sept. 2022

Abstract

This paper presents a detailed comparison of two commonly known magnetic noise compensation meth-ods. One is based on forces generated by harmonic currents interacting with the fundamental field, while the other uses a harmonic field. Both methods are applied to dual three-phase electrically excited synchronous machines. The required compensation currents and parasitic effects, such as the induced voltage in the field winding, are compared. Furthermore, known precalculation methods are adapted to dual three-phase electrically excited synchronous machines and validated with FEM calculations.

ASJC Scopus Sachgebiete

Zitieren

Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines. / Henkenjohann, Jonas; Andresen, Jan; Mertens, Axel.
24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe. Institute of Electrical and Electronics Engineers Inc., 2022.

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

Henkenjohann, J, Andresen, J & Mertens, A 2022, Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines. in 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe. Institute of Electrical and Electronics Engineers Inc., 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe, Hanover, Deutschland, 5 Sept. 2022. <https://ieeexplore.ieee.org/abstract/document/9907710>
Henkenjohann, J., Andresen, J., & Mertens, A. (2022). Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines. In 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe Institute of Electrical and Electronics Engineers Inc.. https://ieeexplore.ieee.org/abstract/document/9907710
Henkenjohann J, Andresen J, Mertens A. Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines. in 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe. Institute of Electrical and Electronics Engineers Inc. 2022 Epub 2022 Okt 17.
Henkenjohann, Jonas ; Andresen, Jan ; Mertens, Axel. / Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines. 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe. Institute of Electrical and Electronics Engineers Inc., 2022.
Download
@inproceedings{354147ecc58c4b71acfe998c367cc0f0,
title = "Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines",
abstract = "This paper presents a detailed comparison of two commonly known magnetic noise compensation meth-ods. One is based on forces generated by harmonic currents interacting with the fundamental field, while the other uses a harmonic field. Both methods are applied to dual three-phase electrically excited synchronous machines. The required compensation currents and parasitic effects, such as the induced voltage in the field winding, are compared. Furthermore, known precalculation methods are adapted to dual three-phase electrically excited synchronous machines and validated with FEM calculations.",
keywords = "Acoustic noise, Force Control, Multiphase drive, Vibration suppression",
author = "Jonas Henkenjohann and Jan Andresen and Axel Mertens",
note = "Funding Information: This work is part of the project DampedWEA and was funded by the Federal Ministry for Economic Affairs and Climate Action on the basis of a decision by the German Bundestag. Funding number: 03EE2008D. The authors would like to thank the industrial project partner Enercon for the inspiration to compare HFI and FFI when applied to an EESM, and the continuous support during the process. ; 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe ; Conference date: 05-09-2022 Through 09-09-2022",
year = "2022",
language = "English",
isbn = "978-1-6654-8700-9",
booktitle = "24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
address = "United States",

}

Download

TY - GEN

T1 - Comparison of Magnetic Noise Compensation Techniques for Dual Three-Phase Electrically Excited Synchronous Machines

AU - Henkenjohann, Jonas

AU - Andresen, Jan

AU - Mertens, Axel

N1 - Funding Information: This work is part of the project DampedWEA and was funded by the Federal Ministry for Economic Affairs and Climate Action on the basis of a decision by the German Bundestag. Funding number: 03EE2008D. The authors would like to thank the industrial project partner Enercon for the inspiration to compare HFI and FFI when applied to an EESM, and the continuous support during the process.

PY - 2022

Y1 - 2022

N2 - This paper presents a detailed comparison of two commonly known magnetic noise compensation meth-ods. One is based on forces generated by harmonic currents interacting with the fundamental field, while the other uses a harmonic field. Both methods are applied to dual three-phase electrically excited synchronous machines. The required compensation currents and parasitic effects, such as the induced voltage in the field winding, are compared. Furthermore, known precalculation methods are adapted to dual three-phase electrically excited synchronous machines and validated with FEM calculations.

AB - This paper presents a detailed comparison of two commonly known magnetic noise compensation meth-ods. One is based on forces generated by harmonic currents interacting with the fundamental field, while the other uses a harmonic field. Both methods are applied to dual three-phase electrically excited synchronous machines. The required compensation currents and parasitic effects, such as the induced voltage in the field winding, are compared. Furthermore, known precalculation methods are adapted to dual three-phase electrically excited synchronous machines and validated with FEM calculations.

KW - Acoustic noise

KW - Force Control

KW - Multiphase drive

KW - Vibration suppression

UR - http://www.scopus.com/inward/record.url?scp=85141640745&partnerID=8YFLogxK

M3 - Conference contribution

AN - SCOPUS:85141640745

SN - 978-1-6654-8700-9

BT - 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe

PB - Institute of Electrical and Electronics Engineers Inc.

T2 - 24th European Conference on Power Electronics and Applications, EPE 2022 ECCE Europe

Y2 - 5 September 2022 through 9 September 2022

ER -