Hairpin Winding Topology and the Influence on Traction Motor Performance for EV Applications
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-0553-9_10
Reference8 articles.
1. Yang, Y., et al.: Design and comparison of interior permanent magnet motor topologies for traction applications. IEEE Trans. Transp. Electrif. 3(1), 86–97 (2017). https://doi.org/10.1109/TTE.2016.2614972
2. Venturini, G., Volpe, G., Villani, M., Popescu, M.: Investigation of cooling solutions for hairpin winding in traction application. In: 2020 International Conference on Electrical Machines (ICEM), pp. 1573–1578 (2020). https://doi.org/10.1109/ICEM49940.2020.9271026
3. Arzillo, A., et al.: Challenges and future opportunities of hairpin technologies. In: 2020 IEEE 29th International Symposium on Industrial Electronics (ISIE), pp. 277–282 (2020). https://doi.org/10.1109/ISIE45063.2020.9152417
4. Pastura, M., Barater, D., Nuzzo, S., Franceschini, G.: Investigation of resistivity impact on AC losses in hairpin conductors. In: IECON 2021 – 47th Annual Conference of the IEEE Industrial Electronics Society, pp. 1–6 (2021). https://doi.org/10.1109/IECON48115.2021.9589047
5. Berardi, G., Bianchi, N.: Design guideline of an AC hairpin winding. In: 2018 XIII International Conference on Electrical Machines (ICEM), pp. 2444–2450 (2018). https://doi.org/10.1109/ICELMACH.2018.8506785
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