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Aynı Fiziksel ve Elektromanyetik Parametreler Altında EASMSM ve ORSMSM’un Vuruntu Torkuna göre Karşılaştırılması

Year 2018, Volume: 6 Issue: 3, 659 - 667, 30.09.2018
https://doi.org/10.29109/http-gujsc-gazi-edu-tr.400070

Abstract

Eksenel
akılı sabit mıknatıslı senkron motor (EASMSM) ve outrunner sabit mıknatıslı
senkron motor (ORSMSM) sıklıkla kullanılan döner tip motor çeşitleridir.
Elektrik motorları için vuruntu torkunun istenmeyen bir çıktıdır. Yüksek
devirlerde çalışırken vuruntu torku eylemsizlik momenti sayesinde önemli bir
problem olmamasına rağmen, düşük devirlerde vuruntu torku üstesinden gelinmesi
gereken bir ciddi sorundur. Özellikle bir uydu üzerindeki güneş panellerinin
hareketi için vuruntu torku en aza indirilmelidir. Vuruntu torku sürekli
mıknatıslı senkron motorların tasarımında çok önemli bir unsur olduğundan
dolayı, bu çalışmada sadece vuruntu torkuna odaklanılmıştır. Bu amaçla,
elektromanyetik analiz programında tasarlanan modeller vuruntu torkuna göre
karşılaştırılmıştır. Böylece en az vuruntu torku istenen uygulamalar için ne
tip motorun tercih edilmesi gerektiği gösterilmiştir.

References

  • [1] C. Kurtuluş, G. Inalhan, “Analysis of İTÜ NXG I Next Generation Technology Demonstrator from a Controls Perspective”, Proc. Of 7th International ESA Conference on Guidance, Navigation & Control Systems, Tralee, Ireland, 2008.
  • [2] N.K. Ure, Y.B. Kaya, G. Inalhan. "The development of a Software and Hardware-in-the-Loop Test System for ITU-PSAT II nano satellite ADCS." Aerospace Conference, 2011 IEEE. IEEE, 2011.
  • [3] A. Saygin, A. Aksöz, "Design optimization for minimizing cogging torque in Axial Flux Permanent Magnet machines," 2017 International Conference on Optimization of Electrical and Electronic Equipment (OPTIM) & 2017 Intl Aegean Conference on Electrical Machines and Power Electronics (ACEMP), Brasov, 2017, pp. 324-329. doi: 10.1109/OPTIM.2017.7974991
  • [4] S. J. Arand, M. Ardebili, “Multi-objective design and prototyping of a low cogging torque axial-flux PM generator with segmented stator for small-scale direct-drive wind turbines,” vol. 10, pp. 889–899, 2016.
  • [5] M. Thiele, S. Member, G. Heins, “Identifying cogging torque harmonics affected by misalignment in axial flux fractional pitch PMSM .,” pp. 2969–2974, 2012.
  • [6] S. A. Afsari, H. Heydari, B. Dianati, "Cogging torque minimization in double sided axial flux magnetic gear," The 6th Power Electronics, Drive Systems & Technologies Conference (PEDSTC2015), Tehran, 2015, pp. 71-76. doi: 10.1109/PEDSTC.2015.7093252.
  • [7] H. Tiegna, Y. Amara, G. Barakat, U. Havre, L. Havre, “Study of Cogging Torque in Axial Flux Permanent Magnet Machines Using an Analytical Model,” vol. 50, no. 2, 2014.
  • [8] M. Gulec, M. Aydin, "Magnet asymmetry in reduction of cogging torque for integer slot axial flux permanent magnet motors," in IET Electric Power Applications, vol. 8, no. 5, pp. 189-198, May 2014, doi: 10.1049/iet-epa.2013.0256.
  • [9] O. O. Ogidi, P. S. Barendse, M. A. Khan, "Influence of Rotor Topologies and Cogging Torque Minimization Techniques in the Detection of Static Eccentricities in Axial-Flux Permanent-Magnet Machine," in IEEE Transactions on Industry Applications, vol. 53, no. 1, pp. 161-170, Jan.-Feb. 2017, doi: 10.1109/TIA.2016.2616320.
  • [10] L. Xiao, J. Li, R. Qu, Y. Lu, R. Zhang, D. Li, "Cogging Torque Analysis and Minimization of Axial Flux PM Machines With Combined Rectangle-Shaped Magnet," in IEEE Transactions on Industry Applications, vol. 53, no. 2, pp. 1018-1027, March-April 2017, doi: 10.1109/TIA.2016.2631522.
  • [11] D. Lim, D. Woo, I. Kim, J. Ro, H. Jung, “Cogging Torque Minimization of a Dual-Type Axial-Flux Permanent Magnet Motor Using a Novel Optimization Algorithm,” vol. 49, no. 9, pp. 5106–5111, 2013.
  • [12] L. Xiao, J. Li, R. Qu, Y. Lu, R. Zhang, D. Li, "Cogging Torque Analysis and Minimization of Axial Flux PM Machines With Combined Rectangle-Shaped Magnet," in IEEE Transactions on Industry Applications, vol. 53, no. 2, pp. 1018-1027, March-April 2017, doi: 10.1109/TIA.2016.2631522
Year 2018, Volume: 6 Issue: 3, 659 - 667, 30.09.2018
https://doi.org/10.29109/http-gujsc-gazi-edu-tr.400070

Abstract

References

  • [1] C. Kurtuluş, G. Inalhan, “Analysis of İTÜ NXG I Next Generation Technology Demonstrator from a Controls Perspective”, Proc. Of 7th International ESA Conference on Guidance, Navigation & Control Systems, Tralee, Ireland, 2008.
  • [2] N.K. Ure, Y.B. Kaya, G. Inalhan. "The development of a Software and Hardware-in-the-Loop Test System for ITU-PSAT II nano satellite ADCS." Aerospace Conference, 2011 IEEE. IEEE, 2011.
  • [3] A. Saygin, A. Aksöz, "Design optimization for minimizing cogging torque in Axial Flux Permanent Magnet machines," 2017 International Conference on Optimization of Electrical and Electronic Equipment (OPTIM) & 2017 Intl Aegean Conference on Electrical Machines and Power Electronics (ACEMP), Brasov, 2017, pp. 324-329. doi: 10.1109/OPTIM.2017.7974991
  • [4] S. J. Arand, M. Ardebili, “Multi-objective design and prototyping of a low cogging torque axial-flux PM generator with segmented stator for small-scale direct-drive wind turbines,” vol. 10, pp. 889–899, 2016.
  • [5] M. Thiele, S. Member, G. Heins, “Identifying cogging torque harmonics affected by misalignment in axial flux fractional pitch PMSM .,” pp. 2969–2974, 2012.
  • [6] S. A. Afsari, H. Heydari, B. Dianati, "Cogging torque minimization in double sided axial flux magnetic gear," The 6th Power Electronics, Drive Systems & Technologies Conference (PEDSTC2015), Tehran, 2015, pp. 71-76. doi: 10.1109/PEDSTC.2015.7093252.
  • [7] H. Tiegna, Y. Amara, G. Barakat, U. Havre, L. Havre, “Study of Cogging Torque in Axial Flux Permanent Magnet Machines Using an Analytical Model,” vol. 50, no. 2, 2014.
  • [8] M. Gulec, M. Aydin, "Magnet asymmetry in reduction of cogging torque for integer slot axial flux permanent magnet motors," in IET Electric Power Applications, vol. 8, no. 5, pp. 189-198, May 2014, doi: 10.1049/iet-epa.2013.0256.
  • [9] O. O. Ogidi, P. S. Barendse, M. A. Khan, "Influence of Rotor Topologies and Cogging Torque Minimization Techniques in the Detection of Static Eccentricities in Axial-Flux Permanent-Magnet Machine," in IEEE Transactions on Industry Applications, vol. 53, no. 1, pp. 161-170, Jan.-Feb. 2017, doi: 10.1109/TIA.2016.2616320.
  • [10] L. Xiao, J. Li, R. Qu, Y. Lu, R. Zhang, D. Li, "Cogging Torque Analysis and Minimization of Axial Flux PM Machines With Combined Rectangle-Shaped Magnet," in IEEE Transactions on Industry Applications, vol. 53, no. 2, pp. 1018-1027, March-April 2017, doi: 10.1109/TIA.2016.2631522.
  • [11] D. Lim, D. Woo, I. Kim, J. Ro, H. Jung, “Cogging Torque Minimization of a Dual-Type Axial-Flux Permanent Magnet Motor Using a Novel Optimization Algorithm,” vol. 49, no. 9, pp. 5106–5111, 2013.
  • [12] L. Xiao, J. Li, R. Qu, Y. Lu, R. Zhang, D. Li, "Cogging Torque Analysis and Minimization of Axial Flux PM Machines With Combined Rectangle-Shaped Magnet," in IEEE Transactions on Industry Applications, vol. 53, no. 2, pp. 1018-1027, March-April 2017, doi: 10.1109/TIA.2016.2631522
There are 12 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Tasarım ve Teknoloji
Authors

Ahmet Aksöz

Ali Saygın

Publication Date September 30, 2018
Submission Date March 1, 2018
Published in Issue Year 2018 Volume: 6 Issue: 3

Cite

APA Aksöz, A., & Saygın, A. (2018). Aynı Fiziksel ve Elektromanyetik Parametreler Altında EASMSM ve ORSMSM’un Vuruntu Torkuna göre Karşılaştırılması. Gazi University Journal of Science Part C: Design and Technology, 6(3), 659-667. https://doi.org/10.29109/http-gujsc-gazi-edu-tr.400070

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