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Advanced control and design methods of the auxiliary resonant commutated pole inverter

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents several methods that enable the reduction of power loss in the auxiliary resonant commutated pole inverter - ARCP. Presented methods can be divided into static and dynamic ones. The static methods are related to an appropriate design of the inverter, whereas dynamic ones to advanced control of the power transistors. A variety of design and control methods are presented together with their advantages and disadvantages. The new control method of the current in the resonant branch is described. The main benefits of the proposed extended control method and their constrains are shown.
Słowa kluczowe
Rocznik
Strony
489--494
Opis fizyczny
Bibliogr. 17 poz., rys., wykr.
Twórcy
autor
  • Power Electronics Department, Kielce University of Technology, 7 1000-lecia P.P. Ave., 25-314 Kielce, Poland
Bibliografia
  • [1] R.W. De Doncker and J.P. Lyons, “The auxiliary resonant commutated pole converter”, Proc. IEEE-IAS 1, 1228-1235 (1990).
  • [2] W. McMurray, “SRC inverter commutated by auxiliary impulse”, IEEE Trans. Communications and Electronics 8-75, 824-829 (1964).
  • [3] W. McMurray, “Resonant snubbers with auxiliary switches”, Proc. IEEE-IAS 1, 829-834 (1989).
  • [4] S.C. Frame, D. Katsis, D.H. Lee D. Boroyevich, and F.C. Lee, “A three-phase zero-voltage-commutation inverter witch inductor feedback”, Proc. IEEE-PESC 1, 4708-4716 (1997).
  • [5] C. Inaba, T. Yamazaki, M. Yoshida, E. Hiraki, Y. Konishi, and M. Nakaoka, “Three phase soft switching inverter with pulse current transformer - assisted resonant snubbers”, Proc. IEEEISIE 1, 1106-1111 (2000).
  • [6] I. Barbi and D.C. Martins, “A true PWM zero-voltage switching pole with very low additional rms current stress”, Proc. IEEE-PESC 1, 261-267 (1991).
  • [7] S. Karyś, “Three-phase soft-switching inverter with coupled inductors experimental results”, Bull. Pol. Ac.: Tech. 59 (4), 535-540 (2011).
  • [8] P. Sun, J.S Lai, H. Qian, W. Yu, C. Smith, and J. Bates, “High efficiency three-phase soft-switching inverter for electric vehicle drives”, Proc. IEEE Vehicle Power and Propulsion Conf. 1, 761-766 (2009).
  • [9] P. Sun, J.S Lai, H. Qian, W. Yu, C. Smith, J. Bates, B. Arnet, A. Litvinov, and S. Leslie, “Efficiency evaluation of a 55kW soft-switching module based inverter for high temperature hybrid electric vehicle drives application”, Proc. Applied Power Electronics Conf. and Exposition (APEC), Twenty-Fifth Annual IEEE 1, 474-479 (2010).
  • [10] X. Yuan and I. Barbi, “A transformer assisted zero voltage switching scheme for neutral-point-clamped (NPC) inverter”, Proc. IEEE-APEC 1, 1259-1265 (1999).
  • [11] X. Yuan and I. Barbi, “Analysis, designing, and experimentation of a transformer-assisted PWM zero-voltage switching pole inverter”, IEEE Trans. on Power Electronics 15, 72-82 (2000).
  • [12] P. Sontheimer and A. Mathoy, “Power for automotive and hybrid electric vehicle applications”, Power Systems Design Europe 14-20, CD-ROM (2006).
  • [13] W. Dong, J. Choi, H. Yu, F.C .Lee, “A 50 kW auxiliary resonant commutated pole inverter for electric vehicle applicationspractical issues”, Proc. IEEE-PESC Conf. Rec. 1, 136-141 (2001).
  • [14] W. Dong, J. Choi, H. Yu, F.C. Lee, D. Boroyevich, and J. Lai, “Comprehensive evaluation of auxiliary resonant comutated pole inverter for electric vehicle applications”, Proc. IEEEPESC 1, 625-630 (2001).
  • [15] J. Dawidziuk, Power Loss Analysis in the Pole Commutated Voltage Source Feed Inverters, Publishing Department of Bialystok University of Technology, Bialystok 2002, (in Polish).
  • [16] S. Karyś, “Selection of resonant circuit elements for the ARCP inverter”, Proc. IEEE-10th Int. Conf. on Electrical Power Quality and Utilisation 15-17, CD-ROM (2009).
  • [17] S. Karyś, “Power loss comparison for the arcp resonant inverter regard to control method”, Przegląd Elektro-Techniczny 11, 64-68 (2008).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-848ad6b4-7d94-4834-818a-777b6d749539
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