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Selected aspects of Modular Multilevel Converter operation

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The operation of the Modular Multilevel Converter (MMC) is the main subject of this paper. Selected operation aspects are discussed on the basis of the averaged model, with a special focus on power section parameters and control. The direct modulation method has been chosen for the control of the MMC.
Rocznik
Strony
375--385
Opis fizyczny
Bibliogr. 14 poz., tab., wykr., rys.
Twórcy
  • Department of Power Electronics, Electrical Drives and Robotics, Silesian University of Technology, 2B Krzywoustego St., 44-100 Gliwice, Poland
autor
  • Department of Power Electronics, Electrical Drives and Robotics, Silesian University of Technology, 2B Krzywoustego St., 44-100 Gliwice, Poland
autor
  • ABB Sp. z o.o., Corporate Research Centre, 13A Starowislna St., 31-038 Krakow, Poland
autor
  • ABB Sp. z o.o., Corporate Research Centre, 13A Starowislna St., 31-038 Krakow, Poland
Bibliografia
  • [1] A. Lesnicar and R. Marquardt, “An innovative modular multilevel converter topology suitable for a wide power range”, IEEE Conf. Power Tech. 3, 1–6 (2003).
  • [2] A. Antonopoulos, L. ¨Angquist, and H.-P. Nee, “On dynamics and voltage control of the modular multilevel converter”, Conf. on Power Electronics and Applications, EPE 2009 1, 1–10 (2009).
  • [3] A. Antonopoulos, K. Ilves, L. ¨Angquist, and H.-P. Nee, “On interaction between internal converter dynamics and current control of high-performance high-power ac motor drives with modular multilevel converters”, IEEE Energy Conversion Congress and Exposition ECCE 1, 4293–4298 (2010).
  • [4] J. Kolb, F. Kammerer, and M. Braun, “Straight forward vector control of the modular multilevel converter for feeding threephase machines over their complete frequency range”, IEEE Industrial Electronics Society Conf. IECON 2011 1, 1596–1601 (2011).
  • [5] M. Zygmanowski, B. Grzesik, and R. Nalepa, “Capacitance and inductance selection of the modular multilevel converter”, Conf. on Power Electronics and Applications, EPE 1, 1–10 (2013).
  • [6] A. Hillers and J. Biela, “Optimal design of the modular multilevel converter for an energy storage system based on split batteries”, Conf. on Power Electronics and Applications, EPE 2013 1, 1–11 (2013).
  • [7] D. Siemaszko, A. Antonopoulos, K. Ilves, M. Vasiladiotis, L. ¨Angquist, and H.-P. Nee, “Evaluation of control and modulation methods for modular multilevel converters”, Int. Power Electronics Conf. IPEC 1, 746–753 (2010).
  • [8] S. Rohner, S. Bernet, M. Hiller, and R. Sommer, “Analysis and simulation of a 6 kV, 6 MVA modular multilevel converter”, IEEE Industrial Electronics Society Conf. 1, 225–230 (2009).
  • [9] L. ¨Angquist, A. Antonopoulos, D. Siemaszko, K. Ilves, M. Vasiladiotis, and H.-P. Nee, “Inner control of modular multilevel converters - an approach using open-loop estimation of stored energy”, Int. Power Electronics Conf. IPEC 2010 1, 1579–1585 (2010).
  • [10] Qingrui Tu, Zheng Xu, and Lie Xu, “Reduced switchingfrequency modulation and circulating current suppression for modular multilevel converter”, IEEE Trans. Power Delivery 26 (3), 2009–2017 (2012).
  • [11] M.A. P´erez, J. Rodr´ıguez, E.J. Fuentes, and F. Kammerer, “Predictive control of ac–ac modular multilevel converters”, IEEE Trans. Ind. Electr. 59 (7), 2832–2839 (2012).
  • [12] M. Zygmanowski, B. Grzesik, M. Fulczyk, and R. Nalepa, “Analytical and numerical power loss analysis in modular multilevel converter”, IEEE Industrial Electronics Society Conf. IECON 1, 465–470 (2011).
  • [13] K. Ilves, A. Antonopoulos, S. Norrga, and H.P. Nee, “Steadystate analysis of interaction between harmonic components of arm and line quantities of modular multilevel converters”, IEEE Trans. Power Electronics 27 (1), 57–68 (2012).
  • [14] S. Rohner, S. Bernet, M. Hiller, and R. Sommer, “Modulation, losses, and semiconductor requirements of modular multilevel converters”, IEEE Trans. Ind. Electr. 57 (8), 2633–2642 (2010).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b6aa7e40-b84e-4a3f-943b-bed515d14c92
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