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Thirty-six pulse rectifier scheme based on zigzag auto-connected transformer

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper, a low kilo-volt-ampere rating zigzag connected autotransformer based 36-pulse rectifier system supplying vector controlled induction motor drives (VCIMD) is designed, modeled and simulated. Detailed design procedure and magnetic rating calculation of the proposed autotransformer and interphase reactor is studied. Moreover, the design process of the autotransformer is modified to make it suitable for retrofit applications. Simulation results confirm that the proposed 36-pulse rectifier system is able to suppress less than 35th harmonics in the utility line current. The influence of load variation and load character is also studied to demonstrate the performance and effectiveness of the proposed 36-pulse rectifiers. A set of power quality indices at AC mains and DC link are presented to compare the performance of 6-, 24- and 36-pulse AC-DC converters.
Rocznik
Strony
117--132
Opis fizyczny
Bibliogr. 29 poz., fig., tab.
Twórcy
  • School of Automation and Electrical Engineering Lanzhou Jiaotong University Anning West Road No. 88, Anning District, Lanzhou, 730070, China
autor
  • School of Automation and Electrical Engineering Lanzhou Jiaotong University Anning West Road No. 88, Anning District, Lanzhou, 730070, China
autor
  • School of Automation and Electrical Engineering Lanzhou Jiaotong University Anning West Road No. 88, Anning District, Lanzhou, 730070, China
autor
  • School of International Education Lanzhou Jiaotong University Anning West Road No. 88, Anning District, Lanzhou, 730070, China
Bibliografia
  • [1] Vas P., Sensorless Vector and Direct Torque Control. Oxford University Press (1998).
  • [2] Nguyen-Thac K., Orlowska-Kowalska T., Tarchala G., Comparative analysis of the chosen fieldweakening methods for the Direct Rotor Flux Oriented Control drive system. Archives of Electrical Engineering 61(4): 443-454 (2012).
  • [3] Singh B., Gairola S., Singh B.N. et al., Multipulse AC-DC converters for improving power quality: a review. IEEE Trans. on Power Electronics 23(1): 260-281(2008).
  • [4] Institute of Electrical and Electronic Engineers (IEEE), IEEE Standard 519-1992, IEEE Guide for Harmonic Control and Reactive Compensation of Static Power Converters. IEEE Inc. (1992).
  • [5] International Electrotechnical Commission (IEC), International Electrotechnical Commission Standard 61000-3-2: 2014, Limits for Harmonic Current Emissions. IEC (2014).
  • [6] Paice D.A., Power Electronic Converter Harmonics: Multipulse Methods for Clean Power. IEEE Press (1996).
  • [7] Singh B., Bhuvaneswari G., Garg V., T-Connected Autotransformer-Based 24-Pulse AC-DC Converter for Variable Frequency Induction Motor Drives. IEEE Trans. on Energy Conversion 21(3): 663-672 (2006).
  • [8] Singh B., Bhuvaneswari G., Garg V., Harmonic Mitigation Using 12-Pulse AC-DC Converter in Vector-Controlled Induction Motor Drives. IEEE Trans. on Power Delivery 21(3): 1483-1492 (2006).
  • [9] Singh B., Bhuvaneswari G., Garg V., Harmonic Mitigation in AC-DC Converters for Vector Controlled Induction Motor Drives. IEEE Trans. on Energy Conversion 22(3): 637-646 (2007).
  • [10] Singh B., Bhuvaneswari G., Garg V., An Improved Power-Quality 30-Pulse AC-DC for Varying Loads. IEEE Trans. on Power Delivery 22(2): 1179-1187 (2007).
  • [11] Singh B., Garg V., Bhuvaneswari G., A Novel T-Connected Autotransformer-Based 18-Pulse AC-DC Converter for Harmonic Mitigation in Adjustable-Speed Induction-Motor Drives. IEEE Trans. on Industrial Electronics 54(5): 2500-2511 (2007).
  • [12] Singh B., Gairola S., A 28-pulse ac-dc converter for line current harmonic reduction. IET Power Electronics 1(2): 287-295 (2008).
  • [13] Singh B., Gairola S., Star-Connected Autotransformer-Based Full-Wave AC-DC Converters. International Journal of Emerging Electric Power Systems 9(5): 1-16 (2008).
  • [14] Garg V., Singh B., Bhuvaneswari G., 24-pulse ac-dc converter for harmonic mitigation. IET Power Electronics 3(6): 364-374 (2009).
  • [15] Singh B., Bhuvaneswari G., Kalpana R., Autoconnected transformer-based 18-pulse ac-dc converter for power quality improvement in switched mode power supplies. IET Power Electronics 3(4): 524-541 (2010).
  • [16] Kalpana R., Bhuvaneswari G., Singh B., Singh S., Harmonic mitigator based on 12-pulse ac-dc converter for switched mode power supply. IET Power Electronics 3(6): 947-964 (2010).
  • [17] Kalpana R., Bhuvaneswari G., Singh B. et al., Autoconnected-Transformer-Based 20-Pulse AC-DC Converter for Telecommunication Power Supply. IEEE Trans. on Industrial Electronics 60(10): 4178-4190 (2013).
  • [18] Oliveira P.S., Seixas F.J.M., Fernandes R.C., Optimization of Multipulse Converters with Delta and Y-differential Connections. Power Electronics Conference 2009 (COBEP’09), Bonito, pp. 901-907 (2009).
  • [19] Fernandes R.C., Oliveira P.S., Seixas F.J.M., A Family of Autoconnected Transformers for 12- and 18-pulse Converters – Generalization for Delta and Wye Topologies. IEEE Trans. on Power Electronics 26(7): 2065-2078 (2011).
  • [20] Chen X., Qiu H., Zigzag Connected Autotransformer-Based 24-pulse AC-DC Converter. International Journal of Emerging Electric Power Systems 16(1): 23-32 (2015).
  • [21] Qiu H., Chen X., Lu M., A delta-type autotransformer based 36-pulse AC-DC converter. Australian Journal of Electrical & Electronics Engineering 12(1): 13-21 (2015).
  • [22] Abdollahi R., T-connected Autotransformer Based 36-Pulse AC-DC Converter for Power Quality Improvement, Electrical Review (Przeglad Elektrotechniczny) 88(2): 321-327 (2012).
  • [23] Abdollahi R., Study of delta/polygon-connected transformer-based 36-pulse ac-dc converter for power quality improvement. Archives of Electrical Engineering 61(2): 277-292 (2012).
  • [24] Abdollahi R., Design and Construction of a Polygon-Connected Autotransformer-Based 36-Pulse AC-DC Converter for Power Quality Improvement in Retrofit Applications. Bulletin of the Polish Academy of Sciences 63(2): 353-362 (2015).
  • [25] Abdollahi R., Harmonic Mitigation using 36-Pulse AC-DC Converter for Direct Torque Controlled Induction Motor Drives. Journal of Applied Research and Technology 13(1): 135-144 (2015).
  • [26] Nakhaee S., Jalilian A., Simulation of 24-Pulse Autotransformer based AC-DC Converter Employing Pulse Multiplication with Direct Torque Controlled Induction Motor Drive Load, 2nd Power Electronics. Drive Systems and Technologies Conference (PEDSTC), Tehran, pp. 593-598 (2011).
  • [27] Abdollahi R., Pulse Doubling in Zigzag-Connected Autotransformer-Based 12-Pulse AC-DC Converter for Power Quality Improvement. Journal of Electrical Engineering 63(6): 357-364 (2012).
  • [28] Chen X., Qiu H., Hao C., Li M., Pulse Doubling in AC-DC Converters Based on Zigzag Auto-Connected Transformer for Harmonic Mitigation. International Journal of Electrical Engineering 22(1): 9-19 (2015).
  • [29] Singh B., Gairola S., Chandra A., Al-Haddad K., Zigzag Connected Autotransformer Based Controlled AC-DC Converter for Pulse Multiplication. IEEE International Symposium on Industrial Electronics (ISIE), Vigo, pp. 889-894 (2007).
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1ab99b60-4b3d-439a-945a-68b9dbfc9f59
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