Open Access
| Issue |
Sci. Tech. Energ. Transition
Volume 81, 2026
Enabling Technologies for the Integration of Electrical Systems in Sustainable Energy Conversion
|
|
|---|---|---|
| Article Number | 8 | |
| Number of page(s) | 11 | |
| DOI | https://doi.org/10.2516/stet/2026004 | |
| Published online | 06 April 2026 | |
- Cavagnino A., Lazzari M., Profumo F., Tenconi A. (2002) A comparison between the axial flux and the radial flux structures for PM synchronous motors, IEEE Trans. Indus. Appl. 38, 6, 1517–1524. [Google Scholar]
- Gieras J.F., Wang R.J., Kamper M.J. (2008) Axial flux permanent magnet brushless machines, Springer Science & Business Media. [Google Scholar]
- Husain T., Tekgun B., Sozer Y., Hamdan M. (2017, May) Comparison of axial flux machine performance with different rotor and stator configurations, in 2017 IEEE International Electric Machines and Drives Conference (IEMDC), IEEE, pp. 1–8. [Google Scholar]
- Parviainen A., Niemela M., Pyrhonen J. (2004) Modeling of axial flux permanent-magnet machines, IEEE Trans. Indus. Appl. 40, 5, 1333–1340. [Google Scholar]
- Lindh P.M., Pyrhönen J.J., Ponomarev P., Vinnikov D. (2013, November) Influence of wedge material on losses of a traction motor with tooth-coil windings, in: IECON 2013–39th Annual Conference of the IEEE Industrial Electronics Society, IEEE, pp. 2941–2946. [Google Scholar]
- Alberti L., Fornasiero E., Bianchi N., Bolognani S. (2011) Rotor losses measurements in an axial flux permanent magnet machine, IEEE Trans. Energy Convers. 26, 2, 639–645. [Google Scholar]
- https://www.hoganas.com on 4.5.2012. [Google Scholar]
- https://www.stenbacka.fi on 4.5.2012. [Google Scholar]
- Lai J., Li J., Xiao T. (2020) Design of a compact axial flux permanent magnet machine for hybrid electric vehicle, IEEE Trans. Indus. Electron. 68, 8, 6630–6639. [Google Scholar]
- Lampérth M.U., Malloy A.C., Mlot A., Cordner M. (2015) Assessment of axial flux motor technology for hybrid powertrain integration, World Electric Vehicle J. 7, 2, 187–194. [Google Scholar]
- Abdelli A., Gilson A., Chareyron B., Zito G. (2023, April) Combination of 2D and 3D Finite Element Models in the Design of Axial Flux Permanent Magnet Machines for Electric Vehicle Applications, in: 2023 IEEE Workshop on Electrical Machines Design, Control and Diagnosis (WEMDCD), IEEE, pp. 1–6. [Google Scholar]
- Gulec M., Aydin M. (2018) Implementation of different 2D finite element modelling approaches in axial flux permanent magnet disc machines, IET Electric Power Appl. 12, 2, 195–202. [Google Scholar]
- Taran N., Ardebili M. (2014, June) A novel approach for efficiency and power density optimization of an axial flux permanent magnet generator through genetic algorithm and finite element analysis, in: 2014 IEEE 23rd International Symposium on Industrial Electronics (ISIE), IEEE, pp. 709–714. [Google Scholar]
- Taran N., Heins G., Rallabandi V., Patterson D., Ionel D.M. (2020) Evaluating the effects of electric and magnetic loading on the performance of single-and double-rotor axial-flux PM machines, IEEE Trans. Indus. Appl. 56, 4, 3488–3497. [Google Scholar]
- Aslan B., Semail E., Korecki J., Legranger J. (2011, November) Slot/pole combinations choice for concentrated multiphase machines dedicated to mild-hybrid applications, in IECON 2011–37th Annual Conference of the IEEE Industrial Electronics Society, IEEE, pp. 3698–3703. [Google Scholar]
- Malloy A.C., Martinez-Botas R.F., Lamperth M. (2014) Measurement of magnet losses in a surface mounted permanent magnet synchronous machine, IEEE Trans. Energy Convers. 30, 1, 323–330. [Google Scholar]
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