ISSN 0021-3454 (print version)
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vol 67 / October, 2024
Article

DOI 10.17586/0021-3454-2019-62-9-843-850

UDC 62.50

SYNTHESIS OF THE CONTROL LAW OF A HIGH-POWER BRIDGE VOLTAGE CONVERTER

S. A. Alexandrova
Saint Petersburg National Research University of Information Technologies, Mechanics and Optics; student


A. P. Baev
JSC Research Institute of Fine Mechanics, Saint Petersburg; Department Head


N. A. Nikolaev
ITMO University, Saint Petersburg, 197101, Russian Federation; Associate professor


O. V. Slita
ITMO University, Saint Petersburg, 197101, Russian Federation; Associate professor


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Abstract. A modified method of phase control is developed for a high-power dc bridge voltage converter is developed. The proposed method is based on variation of power transistors switching frequency. Предложенная методика основана на изменении частоты коммутации силовых ключей. In order to improve dynamic indices characteristics of the designed system and reliability and durability of the converter it is proposed to restrict maximal current switched by transistors and to use an algorithm of PI-control law with adjustable parameters which values depend on supply voltage.
Keywords: full-bridge inverter, soft commutation, pulse-width control, interval plant model, PI-controller with adjustable parameters, variable switching frequency

References:
  1. Erickson R., Maksimovic D. Fundamentals of power electronics, Norwell, Mass, Kluwer Academic, 2001, 885 р.
  2. Meleshin V.I., Ovchinnikov D.A. Upravleniye tranzistornymi preobrazovatelyami elektroenergii (Control of Transistor Power Converters), Moscow, 2011, 576 р. (in Russ.)
  3. Koo G.B., Moon G.W., Youn M.J. IEEE Trans. Power Electron., 2004, no. 2(19), pp. 411–419.
  4. Jang Y., Jovanovic M.M. IEEE Trans. Power Electron., 2004, no. 3(19), pp. 701–708.
  5. Jain P.K., Kang W., Soin H., Xi Y. IEEE Trans. Power Electron., 2002, no. 5(17), pp. 649–657.
  6. Jang Y., Jovanovic M.M. IEEE Trans. Power Electron., 2007, no. 3(22), pp. 987–994.
  7. Jeon S.J., Cho G.H. IEEE Trans. Power Electron., 2001, no. 5(16), pp. 573–580.
  8. Sabate J.A, Vlatkovic Y., Ridel R.B., Lee F.C., Cho B. IEEE Applied Power Electronics Conference Pro-ceedings, 1990, рр. 275–284.
  9. Alexandrova S.А., Baev A.Р., Goncharenko M.R., Nikolaev N.А., Slita O.V. Proceedings of TUSUR, 2017, no. 3(20), pp. 220–225. (in Russ.)
  10. Zhao L., Li H., Liu Y., Li Z. Energies, 2015, no. 4(8), pp. 2647–2673.
  11. Mallik A., Khalib A. IEEE Trans. Power Electron., 2016, no. 8(32), pp. 6523–6531.
  12. Chen Z., Liu S., Ji F. Proceedings of the 7th Intern. Power Electronics and Motion Control Conference (IPEMC), China, 2012, рр. 1888–1893.
  13. Alexandrova S., Baev A., Goncharenko M., Nikolaev N., Slita O. Proceedings of the Intern. Conf. on In-formation and Digital Technologies, 2017.
  14. Akunov T.A., Alexandrova S.A., Slita O.V., Sudarchikov S.A., Ushakov A.V. Problems of Control and In-formatics, 2016, no. 4, pp. 100–108.
  15. Ibrahim O., Nor Z.Y., Nordin S., Khalid Y.A. IEEE Open Access Journal, 2017, vol. 5, рр. 18143–18154.
  16. Di Capua G., Shirsavar S.A., Hallworth M.A., Femia N. IEEE Transactions on Power Electronics, 2004, рр. 99–102.
  17. Kalmykov S.A., Shokin Yu.I., Yuldashev Z.Kh. Metody interval'nogo analiza (Interval Analysis Methods), Novosibirsk, 1986, 222 р. (in Russ.)
  18. Alexandrova S.А., Baev A.Р., Nikolaev N.А., Slita O.V. Scientific and Technical Journal of Information Technologies, Mechanics and Optics, 2018, no. 4(18), pp. 700–703. (in Russ.)
  19. O'Dwyer A. Handbook of PI and PID controller tuning rules, 3nd Edition, London, Imperial College Press, 2009, 608 p.
  20. Goyvoronsky S.A., Ezangin T.A. Proceedings of the 2nd IEEE Intern. Conference on System and Com-pute Science (ICSCS), 2013, рр. 201–204.