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Modelling concept of NxM matrix converter under periodic control for dynamic states

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents a concept of an NxM Matrix Converter (MC) modeling under periodic control strategy patented in Poland. This strategy allows to change an Nphase input system of voltages and current with the frequency fi to the M-phase output system with the frequency fo, maintaining both systems symmetrical and providing small distortions of voltage and current waveforms at rather high frequencies. In this paper the control strategy is extended for dynamic states when one of the frequencies is changed. Matrix converter equations have been derived using the constrain matrix, which is determined by the switch states. The equations have the hybrid form of a multi-port circuit. To simplify these equations the symmetrical components of input and output voltages and currents have been applied. As a result, rather simple equations have been found. They can be interpreted to an equivalent scheme. All considerations are illustrated using an exemplary 6H3 matrix converter.
Rocznik
Strony
305--315
Opis fizyczny
Bibliogr. 14 poz., rys., wz.
Twórcy
autor
  • Institute on Electromechanical Energy Conversion Cracow University of Technology, Kraków, Poland
  • Institute on Electromechanical Energy Conversion Cracow University of Technology, Kraków, Poland
Bibliografia
  • [1] Sieńko T., Sobczyk T.J., A method of matrix converter control. Patent of Republic of Poland No. 204643 (2003).
  • [2] Sieńko T., Sobczyk T.J., Matrix converter control for applications to multi-phase high-speed generators. Archives of Electrical Engineering, PWN, Warsaw 53(2): 217-228 (2004).
  • [3] Sieńko T., Sobczyk T.J., Matrix converter for high-speed generators. Proc. of IEEE International Electric Machines and Drives Conference (IEMDC’05), San Antonio, CD – IEEE Catalog 05EX1023C, pp. 1975-1980 (2005).
  • [4] Sieńko T., Sobczyk T.J., Danilevicz J.B., A study of asymmetrical regimes in matrix converters for multi-phase high speed generators. Proc. of IEEE Power Tech 2005, St. Petersburg, CD-Paper No. 12 (2005).
  • [5] Casadei D., Serra G., Tani A., Zarri L., A review on matrix converters. Przegląd Electrotechniczny (Electrical Review), Sigma-NOT Pub., Warsaw, 82(2): 15-25 (2006).
  • [6] Sieńko T., Sobczyk T.J., Application of Matrix converter as a voltage phase controller in Power system. IEEE SPEEDAM 2006, Italy, pp. 13-17, IEEE Catalog No. 06EX1320C (2006).
  • [7] Kolar J.W., Friedli T., Fischer F., Round S.D., The essence of thre-phase AC/AC converter systems. [in:] Proc. Power Electronics and Motion Control Conference (EPE-PEMC’08), pp. 27-42, Sept. (2008).
  • [8] Sobczyk T.J., Analysis of voltage transfer at 9x3 matrix converter. (in Polish), Technical Transaction, Cracow University of Technology Press, Kraków 105: 79-93, 1-E/2008, (2008).
  • [9] Kolar J.W., Friedli T., Rodriguez J., Wheeler P.W., Review of three phase PWM AC – AC converter topologies. IEEE Trans. Ind. Electron 58(11): 4988-5006 (2011).
  • [10] Eslami M., Shareef H., Mohamed A., Khajehzadeh M., A survey on flexible AC transmission systems. Przegląd Elektrotechniczny (Electrical Review), Sigma-NOT Pub., Warsaw 88(1a): 1-11 (2012).
  • [11] Friedli T., Kolar W., Milestones in matrix converter research. IEEJ Journal of Industry Applications 1(1): 2-14 (2012).
  • [12] Rodriguez J., Rivera M., Kolar J.W., Wheeler P.W., A review of control and modulation for matrix converters. IEEE Trans. Ind. Electron. 59(1): 58-70 (2012).
  • [13] Borkowski D., Sobczyk T.J., Description of matrix converter in frequency domain. Archives of Electrical Engineering, Polish Academy of Science 62(3): 387-400 (2013).
  • [14] Borkowski D., Matrix converter as power flow controller in transmisson line – operation analysis in frequency domain. Monograth of the Cracow University of Technology on Electrical & Computer Eng. no. 428, Cracow (2013).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0d0379e6-02b0-4363-8461-da6110228219
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