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A robust 18-pulse diode rectifier with coupled reactors

Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
Konferencja “Integrated Optics – Sensor, Sensing and Methods” (IOS 2011) Szczyrk, luty 2011
Języki publikacji
EN
Abstrakty
EN
The article presents the principle of operation and selected results of simulation and laboratory tests of the 18-pulse rectifier system with coupled reactors and small series active power filter. The presented system makes it possible to reduce, especially in distribution supply networks, undesired higher current harmonics. The 18-pulse nature of operation of the rectifier is reached using a set of coupled three-phase network reactors (CDT and CTR). The simultaneous use of the coupled reactors and the small active power filter provides opportunities for reduction of the supply current distortion, especially in case of voltage harmonic distortion and voltage unbalance.
Rocznik
Strony
541--550
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
  • Faculty of Electrical Engineering, Gdynia Maritime University, Department of Ship Automation, 81-87 Morska St., 81-225 Gdynia, Poland, mysiak@am.gdynia.pl
Bibliografia
  • [1] A. Moreno-Muńoz, Power Quality Mitigation Technologies in a Distributed Environment, Springer-Verlag, London, 2007.
  • [2] R. Strzelecki and G. Benysek, Power Electronics in Smart ElectricalEnergy Networks, Springer-Verlag, London, 2009
  • [3] R. Strzelecki and H. Supronowicz, Power Factor in AC Supply Systems and Improvements Methods, Publishing House of the Warsaw University of Technology, Warsaw, 2000, (in Polish).
  • [4] H. Akagi, E.H. Watanabe, and M. Aredes, Instantaneous Power Theory and Applications to Power Conditioning, John Wiley&Sons, London, 2007.
  • [5] D.A. Paice, Power Electronics Converter Harmonics, Multipulse Methods for Clean Power, Wiley-IEEE Press, London, 1999.
  • [6] D.A. Paice, Clean Power Electronic Converters: Engineering Design and Application Guides, Paice & Associates, Palm Harbor, 2004.
  • [7] J.W. Kolar and H. Ertl, “Status of the techniques of threephase rectifier systems with low effects on the mains”, 21st Int. Telecommunications Energy Conf. INTELEC’99 1, 16 (1999).
  • [8] B. Singh, B.N. Singh, A. Chandra, K. Al-Haddad, A. Pandey, and D.P. Kothari, “A review of three-phase improved power quality AC-DC converters”, IEEE Trans. on Indust. Electronics 51 (3), 641–660 (2004).
  • [9] B. Singh, S. Gairola, B.N. Singh, A. Chandra, and K.B. Al-Haddad, “Multipulse AC–DC converters for improving power quality: a review”, IEEE Trans. on Power Electronics 23 (1), 260–281 (2008).
  • [10] G. Gong, M.L. Heldwein, U. Drofenik, J. Minibock, M. Kazuaki, and J.W. Kolar, “Comparative evaluation of three-phase high power factor AC-DC converter concepts for application in future more electric aircraft”, 19th Annual IEEE Applied Power Electronics Conf. and Exposition APEC 2, 1152–1159 (2004).
  • [11] J. Plewako, “Multi-pulse diode converters supplied from autotransformers”, Electrotechnical Review 2, 53–56 (2007), (in Polish).
  • [12] P. Mysiak, Multi-Pulse Diode Rectifier with Current Harmonic Blocking Reactors, Publishing House of Gdynia Maritime University, Gdynia, 2010.
  • [13] H. Fujita and H. Akagi, “An approach to harmonic current-free ac/dc power conversion for large industrial loads: the integration of a series active filter with a double-series diode rectifier”, IEEE Trans. Indust. Appl. 33 (5), 1233–1240 (1997).
  • [14] F.Z. Peng, H. Akagi, and A. Nabae, “Compensation characteristics of the combined system of shunt passive and series active filters”, IEEE Trans. on Indust. Appl. 29 (1), 144–151 (1993).
  • [15] R. Strzelecki and H. Supronowicz, Filtration of the Harmonic in AC Supply Systems, Adam Marszałek Publishing House, Toruń, 1997/1999, (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG8-0070-0046
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