Araştırma Makalesi

Three-Phase Pole-Changing Winding with Ratio of Poles 4:6

Cilt: 3 Sayı: 1 28 Mayıs 2024
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Three-Phase Pole-Changing Winding with Ratio of Poles 4:6

Öz

The development and analysis of a new pole-changing winding with pole ratio 2p1/2p2=4/6, as well as the experimental research of a two-speed induction motor with this winding, involved the use of modernized methods such as Discretely Specified Spatial Function (DSSF). These methods have been used to develop pole-changing winding designs for two-speed induction motors with improved electromagnetic properties, closely resembling conventional windings. The new pole-changing winding could be aviable alternative to conventional two-layer windings, as it offers similar electromagnetic properties. Furthermore, the new pole-changing winding was analyzed using ANSYS/Maxwell and tested on an induction motor built on the base of a 1,5 kW/1500 rpm induction motor in frame 4A80U3, developing 1,1 kW/0,7 kW rated power for 2p1/2p2=4/6 poles, respectively. Overall, this research demonstrates the potential for developing advanced pole-changing windings with improved electromagnetic properties and their application in practical induction motors.

Anahtar Kelimeler

Teşekkür

The group of authors of the article expresses its gratitude to the staff of the Department of Electric Power Supply and the rector of the Tashkent State Technical University for the support provided during scientific research, as well as to the Organizing Committee of the Congress for their help and support.

Kaynakça

  1. M. van Werkhoven, C. U. Brunner, “Policy Guidelines for Motor Driven Units,” 4E Electric Motor Systems Annex (EMSA), Part 2, 2018, https://www.iea-4e.org/wp-content/uploads/ 2020/12/PGMdu_Final_250418.
  2. N. I. Bogatyrev, A. S. Kreymer, V. N. Vanurin, K. A. Dganibekov, “Modulated stator windings of the motor for fan drives,” Polythematic Online Scientific Journal of Kuban State Agrarian University, vol. 118, no. 4, pp. 1441-1458, 2016.
  3. M. Bobojanov, D. Rismuxamedov, F. Tuychiev, Kh. Shamsutdinov, Kh. Magdiev, “Pole-changing motor for lift installation,” E3S Web of Conference, Kazan, Russia, 2020, vol. 216, pp.1-5.
  4. H. Auinger, “Polumschaltbare dreiphasenwicklung mit 6 klemmen ubersicht zum stand der technik,” Bulletin des Schweizerischen Elektrotechnischen Vereins, vol. 69, no. 17, pp. 926-932, 1978.
  5. J. H. H. Alwash, K. S. Ismail, J. F. Eastham, “A novel 16/6 phase modulated winding,” IEEE Trans. on Energy Conversion, vol. 15, no. 2, pp. 188–190, Jun. 2000.
  6. C. Kovacs, “Pole-changing windings for close ratio and 1:N ratio using the 3//Y/3//Y method,” Advances in Science, Technology and Engineering Systems Journal, vol. 3, no. 4, pp. 241-253, 2018.
  7. J. Portos, M. P. Reddy, D. Eaton, “Application and advantages of PAM multi speed motors in petroleum and chemical industries,” 2010 Record of Conference Papers Industry Applications Society 57th Annual Petroleum and Chemical Industry Conference (PCIC), San Antonio, TX, USA, Sep. 2010, pp. 1-10.
  8. L. M. Melcescu, M. V. Cistelecan, O. Craiu, H. B. Cosan, “A new 4/6 pole-changing double layer winding for three phase electrical machines,” The XIX International Conference on Electrical Machines (ICEM), Rome, Italy, Sep. 2010, pp. 1-6.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Elektrik Makineleri ve Sürücüler

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

28 Mayıs 2024

Gönderilme Tarihi

26 Aralık 2023

Kabul Tarihi

15 Nisan 2024

Yayımlandığı Sayı

Yıl 2024 Cilt: 3 Sayı: 1

Kaynak Göster

APA
Bobojanov, M., Rismukhamedov, D., Tuychiev, F., & Shamsutdinov, K. (2024). Three-Phase Pole-Changing Winding with Ratio of Poles 4:6. Türk Mühendislik Araştırma ve Eğitimi Dergisi, 3(1), 38-47. https://izlik.org/JA36BH46GP
AMA
1.Bobojanov M, Rismukhamedov D, Tuychiev F, Shamsutdinov K. Three-Phase Pole-Changing Winding with Ratio of Poles 4:6. TMAED. 2024;3(1):38-47. https://izlik.org/JA36BH46GP
Chicago
Bobojanov, Makhsud, Dauletbek Rismukhamedov, Furkat Tuychiev, ve Khusniddin Shamsutdinov. 2024. “Three-Phase Pole-Changing Winding with Ratio of Poles 4:6”. Türk Mühendislik Araştırma ve Eğitimi Dergisi 3 (1): 38-47. https://izlik.org/JA36BH46GP.
EndNote
Bobojanov M, Rismukhamedov D, Tuychiev F, Shamsutdinov K (01 Mayıs 2024) Three-Phase Pole-Changing Winding with Ratio of Poles 4:6. Türk Mühendislik Araştırma ve Eğitimi Dergisi 3 1 38–47.
IEEE
[1]M. Bobojanov, D. Rismukhamedov, F. Tuychiev, ve K. Shamsutdinov, “Three-Phase Pole-Changing Winding with Ratio of Poles 4:6”, TMAED, c. 3, sy 1, ss. 38–47, May. 2024, [çevrimiçi]. Erişim adresi: https://izlik.org/JA36BH46GP
ISNAD
Bobojanov, Makhsud - Rismukhamedov, Dauletbek - Tuychiev, Furkat - Shamsutdinov, Khusniddin. “Three-Phase Pole-Changing Winding with Ratio of Poles 4:6”. Türk Mühendislik Araştırma ve Eğitimi Dergisi 3/1 (01 Mayıs 2024): 38-47. https://izlik.org/JA36BH46GP.
JAMA
1.Bobojanov M, Rismukhamedov D, Tuychiev F, Shamsutdinov K. Three-Phase Pole-Changing Winding with Ratio of Poles 4:6. TMAED. 2024;3:38–47.
MLA
Bobojanov, Makhsud, vd. “Three-Phase Pole-Changing Winding with Ratio of Poles 4:6”. Türk Mühendislik Araştırma ve Eğitimi Dergisi, c. 3, sy 1, Mayıs 2024, ss. 38-47, https://izlik.org/JA36BH46GP.
Vancouver
1.Makhsud Bobojanov, Dauletbek Rismukhamedov, Furkat Tuychiev, Khusniddin Shamsutdinov. Three-Phase Pole-Changing Winding with Ratio of Poles 4:6. TMAED [Internet]. 01 Mayıs 2024;3(1):38-47. Erişim adresi: https://izlik.org/JA36BH46GP