Details
Original language | English |
---|---|
Title of host publication | 2022 International Conference on Electrical Machines, ICEM 2022 |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Pages | 282-288 |
Number of pages | 7 |
ISBN (electronic) | 9781665414326 |
ISBN (print) | 978-1-6654-1433-3 |
Publication status | Published - 2022 |
Event | 2022 International Conference on Electrical Machines, ICEM 2022 - Valencia, Spain Duration: 5 Sept 2022 → 8 Sept 2022 |
Abstract
This paper presents an computationally very inexpensive way to determine the operating behavior of permanent magnet synchronous machines (PMSM). For this purpose, magnetic equivalent circuits (MEC) are used, which are solved with a fast calculation method and evaluated and validated by means of detailed finite-element-method (FEM) simulations. Both the procedure for building the MEC and the solution method are presented. Emphasis is placed on a simple, but as accurate as possible structure of the MEC. The evaluation of the results is performed using the air gap flux density, the inductances, the flux linkages and the torque. The calculations are made taking into account saturation effects in order to be able to determine the parameters at different operating points.
Keywords
- iterative methods, magnetic equivalent circuit, magnetostatics, parameter identification, PMSM
ASJC Scopus subject areas
- Engineering(all)
- Electrical and Electronic Engineering
- Engineering(all)
- Mechanical Engineering
Cite this
- Standard
- Harvard
- Apa
- Vancouver
- BibTeX
- RIS
2022 International Conference on Electrical Machines, ICEM 2022. Institute of Electrical and Electronics Engineers Inc., 2022. p. 282-288.
Research output: Chapter in book/report/conference proceeding › Conference contribution › Research › peer review
}
TY - GEN
T1 - Efficient Determination of the Behavior of Permanent Magnet Synchronous Machines using Magnetic Equivalent Circuits
AU - Schubert, Marius
AU - Wohlers, Constantin
AU - Ponick, Bernd
PY - 2022
Y1 - 2022
N2 - This paper presents an computationally very inexpensive way to determine the operating behavior of permanent magnet synchronous machines (PMSM). For this purpose, magnetic equivalent circuits (MEC) are used, which are solved with a fast calculation method and evaluated and validated by means of detailed finite-element-method (FEM) simulations. Both the procedure for building the MEC and the solution method are presented. Emphasis is placed on a simple, but as accurate as possible structure of the MEC. The evaluation of the results is performed using the air gap flux density, the inductances, the flux linkages and the torque. The calculations are made taking into account saturation effects in order to be able to determine the parameters at different operating points.
AB - This paper presents an computationally very inexpensive way to determine the operating behavior of permanent magnet synchronous machines (PMSM). For this purpose, magnetic equivalent circuits (MEC) are used, which are solved with a fast calculation method and evaluated and validated by means of detailed finite-element-method (FEM) simulations. Both the procedure for building the MEC and the solution method are presented. Emphasis is placed on a simple, but as accurate as possible structure of the MEC. The evaluation of the results is performed using the air gap flux density, the inductances, the flux linkages and the torque. The calculations are made taking into account saturation effects in order to be able to determine the parameters at different operating points.
KW - iterative methods
KW - magnetic equivalent circuit
KW - magnetostatics
KW - parameter identification
KW - PMSM
UR - http://www.scopus.com/inward/record.url?scp=85141071948&partnerID=8YFLogxK
U2 - 10.1109/ICEM51905.2022.9910670
DO - 10.1109/ICEM51905.2022.9910670
M3 - Conference contribution
AN - SCOPUS:85141071948
SN - 978-1-6654-1433-3
SP - 282
EP - 288
BT - 2022 International Conference on Electrical Machines, ICEM 2022
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2022 International Conference on Electrical Machines, ICEM 2022
Y2 - 5 September 2022 through 8 September 2022
ER -