Araştırma Makalesi

Design and Performance Analysis of an Outer-Rotor PMaSynRM

Cilt: 12 Sayı: 1 25 Mart 2024
PDF İndir
EN

Design and Performance Analysis of an Outer-Rotor PMaSynRM

Abstract

Permanent magnet synchronous motors (PMSMs) are consciously used as traction motors in electric vehicles (EVs) and hybrid electric vehicles (HEVs). The rotor position (inner-rotor, outer-rotor) and topology of PMSMs significantly impact their torque profile, efficiency, and demagnetization characteristics. This article focuses on designing an outer-rotor permanent-magnet-assisted synchronous reluctance motor (PMaSynRM) under traction motor requirements and investigating its electromagnetic performance using the finite element method (FEM). This study's primary challenge is achieving optimal machine performance, considering high maximum torque and the risk of demagnetization at low levels. The design, derived from analytical calculations, was subjected to Finite Element Method (FEM) analyses. These analyses investigated motor performance in terms of efficiency, the ability to generate torque at different drive currents, and the risk of demagnetization. As a result of the study, the proposed PMaSynRM design was obtained that provides an adequate demagnetization performance even under 300% loading, has a maximum torque exceeding 35 Nm, and achieves an efficiency of 90% at rated conditions.

Keywords

Destekleyen Kurum

Gazi University Scientific Research Projects Coordination Unit (BAP)

Proje Numarası

FDK-2022-7686

Teşekkür

This work has been supported by Gazi University Scientific Research Projects Coordination Unit (BAP) under grant number FDK-2022-7686.

Kaynakça

  1. [1] Ocak, C., & Yenipınar, B. (2021). Hafif Elektrikli Araçlar için Asenkron Motor Tasarımı ve Uygulaması. Avrupa Bilim ve Teknoloji Dergisi, (26), 228-233.
  2. [2] Kerem, A., & Gürbak, H. (2020). Elektrikli Araçlar için Hızlı Şarj İstasyonu Teknolojileri. Gazi University Journal of Science Part C: Design and Technology, 8(3), 644-661.
  3. [3] Cao, R., Mi, C., & Cheng, M. (2012). Quantitative comparison of flux-switching permanent-magnet motors with interior permanent magnet motor for EV, HEV, and PHEV applications. IEEE Transactions on magnetics, 48(8), 2374-2384.
  4. [4] Husain, I., Ozpineci, B., Islam, M. S., Gurpinar, E., Su, G. J., Yu, W., ... & Sahu, R. (2021). Electric drive technology trends, challenges, and opportunities for future electric vehicles. Proceedings of the IEEE, 109(6), 1039-1059.
  5. [5] Liu, X., Chen, H., Zhao, J., & Belahcen, A. (2016). Research on the performances and parameters of interior PMSM used for electric vehicles. IEEE Transactions on Industrial Electronics, 63(6), 3533-3545.
  6. [6] Ding, L., Cheng, Y., Zhao, T., Yao, K., Wang, Y., & Cui, S. (2023). Design and Optimization of an Asymmetric Rotor IPM Motor with High Demagnetization Prevention Capability and Robust Torque Performance. Energies, 16(9), 3635.
  7. [7] Wang, S. C., Nien, Y. C., & Huang, S. M. (2022). Multi-objective optimization design and analysis of V-shape permanent magnet synchronous motor. Energies, 15(10), 3496.
  8. [8] Dalcali, A. (2018). Optımal Desıgn of Hıgh Performance Interıor PM Motor for Electrıc Vehıcle. The International Journal of Energy and Engineering Sciences, 3(2), 46-54.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Elektrik Makineleri ve Sürücüler

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

24 Şubat 2024

Yayımlanma Tarihi

25 Mart 2024

Gönderilme Tarihi

21 Kasım 2023

Kabul Tarihi

5 Ocak 2024

Yayımlandığı Sayı

Yıl 1970 Cilt: 12 Sayı: 1

Kaynak Göster

APA
Yenipınar, B., Saygın, A., Sönmez, Y., Yılmaz, C., & Ocak, C. (2024). Design and Performance Analysis of an Outer-Rotor PMaSynRM. Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım ve Teknoloji, 12(1), 148-156. https://doi.org/10.29109/gujsc.1393844

                                     16168      16167     16166     21432        logo.png   


    e-ISSN:2147-9526