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A. Sikorski and M. Korzeniewski

References R. Teodorescu and F. Blaabjerg "Wind turbines with grid failure detection operating in stand alone and grid-connected mode', IEEE Trans. on Power Electronics 19 (5), 1323-1332 (2004). A. Sikorski and A. Kuźma, "Cooperation of induction squirrelcage generator with grid connected AC/DC/AC converter', Bull. Pol. Ac.: Tech. 57 (4), 317-322 (2009). A. Sikorski, "The problem of switching losses minimisation in AC/DC/AC PWM converter feeding an induction motor', Scientific

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Piotr Lipnicki and Daniel Lewandowski

Induction Machines. A Survey, Industrial Electronics Society, IECON’03, 29th Annual Conference of the IEEE, Roanole, VA, 2003, 2883-2888. [7] EL-HUSSEINI M.H., PERISSE F., ROJAT G., VENET K.P., Realization of a Smart Electrolytic Capacitor Circuit, IEEE Ind. Appl. Mag., 2002, 8(1), 16-20. [8] YANG S., Estimated life of aluminum electrolytic capacitors, Hitachi AIC Inc., Tokyo, Japan, 1999. [9] LEWANDOWSKI D., LIPNICKI P., ORKISZ M., TRESCH A., The effect of change in DC link series resistance on the AC/AC converter operation

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A. Sikorski and A. Kuźma

, 107-112 (2005). A. Ruszczyk, "New algorithms of predictive methods of AC/DC and DC/AC converters adjustment", PhD Thesis , Białystok Technical University, Białystok, 2005, (in Polish). A. Sikorski, "Comparison of vector properties of regulation of the inductive machine moment and flux (DTC and FOC)", Electrical Machines Notes & Studies 72, 219-224 (2005), (in Polish). T. Orłowska-Kowalska, M. Kamiński, and K. Szabat, "Mechanical state variable estimation of drive system with elastic

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S. Piasecki, R. Szmurlo, J. Rabkowski and M. Jasinski

two-time-scale AC/DC-DC converter”, IEEE Trans. Ind. Electron. 57 (11), 3746–3753 (2010). [8] N. Froehleke, D. Hahm, H. Mundinger, H. Njiende, P. Wallmeier, and H. Puder, “CAE-tool for optimizing development of switched mode power supplies”, Sixteenth Annual IEEE Applied Power Electronics Conference and Exposition (APEC 2001) 2, 752–758 (2001). [9] B.Y.S. Busquets-Monge, G. Soremekun, E. Hertz, C. Crebier, S. Ragon, D. Boroyevich, Z. Gürdal, M. Arpilliere, and D.K. Lindner, “Power converter design optimization. A GA-based design approach to

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Rohollah Abdollahi

. New York, IEEE Press (1996). Hammond R., Johnson L., Shimp A., Harder D., Magnetic solutions to line current harmonic reduction. Proc. Conf. Power Con., pp. 354-364 (1994). Johnson L. J., Hammond R. E., Main and auxiliary transformer rectifier system for minimizing line harmonics. U. S. Patent 5 063 487, Nov. (1991). Singh B., Gairola S., Chandra A., Haddad K., Multipulse AC-DC Converters for Improving Power Quality: A Review. IEEE Transactions on Power Electronics 23(1), January

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P. Falkowski, K. Kulikowski and R. Grodzki

. Guzinski, “Medium-voltage drives: Challenges and existing technology”, in IEEE Power Electronics Magazine 3 (2), 29‒41 (2016). [7] P. Wiatr and M.P. Kazmierkowski, “Model predictive control of multilevel cascaded converter with boosting capability – a simulation study”, Bull. Pol. Ac.: Tech 64 (3), 581‒590 (2016). [8] A. Godlewska, R. Grodzki, P. Falkowski, M. Korzeniewski, K. Kulikowski, and A. Sikorski, “Advanced control methods of DC/AC and AC/DC power converters – look-up table and predictive algorithms”, Advanced Control of Electrical Drives and

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Rohollah Abdollahi

, IEEE Press, New York, 1996. [5] BIN WU: High-Power Converters and AC Drives, IEEE Press, Wiley-Interscience, 2006. [6] CHOI, S.-ENJETI, P. N.-PITEL, I. J. : Polyphase Transformer Arrangements with Reduced kVA Capacities for Harmonic Current Reduction in Rectifier Type Utility Interface, IEEE Trans. on Power Electronics 11 No. 5 (Sep 1996), 680-689. [7] HAMMOND, P.W. : Autotransformer, U.S. Patent No.5619407 (Apr, 8, 1997). [8] SINGH, B.-BHUVANESWARI, G.-GARG, V. : Harmonic Mitigation using 12-Pulse AC-DC

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R. Abdollahi

. [5] L.J. Johnson and R.E. Hammond, “Main and auxiliary transformer rectifier system for minimizing line harmonics”, U.S. Patent 5 063 487, Nov. 1991. [6] B. Singh, S. Gairola, A. Chandra, and K. Haddad, “Multipulse AC-DC converters for improving power quality: a review ”, IEEE Trans on Power Electronics 23 (1), CD-ROM (2008). [7] R. Abdollahi, “Hexagon-connected transformer-based 20-pulse AC-DC converter for power quality improvement”, J. Electrical Systems 8-2, CD-ROM (2012). [8] R. Abdollahi and A. Jalilian

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Krzysztof Kulikowski

Side Connected Converter in Doubly Fed Induction Generators. International Symposium on Power Electronics, Electrical Drives, Automation and Motion SPEEDAM 2008, Italy, Ischia, pp. 1455-1459 (2008). Kulikowski K., Sikorski A., Comparison of new DPC methods for two-and three-level AC/DC converters. Przegląd Elektrotechniczny 87(1): 56-61 (2011). Kulikowski K., Sikorski A., Regulacja mocy trójpoziomowego przekształtnika AC/DC współpracującego z siecią. ( Power control of three-level AC/DC inverter with the

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Antoni Bogdan

analysis of PWM converters as cycle-by-cycle averaged two-ports, and by pspicebased simulations. Proc. 8 th Eur. Conf. Power Electron. Applicat., Lausanne, Switzerland (1999). Wong S. C., Tse C. K., Orabi M. Ninomiya T. The method of double averaging: an approach for modeling power-factor-correction power converters. IEEE Transactions on Circuits and Systems: 53(2): 454-462 (2006). Zhu G., Wei H., Kornetzky P., Batarseh I. Small-signal modeling of a single-switch AC/DC powerfactor-correction circuit. IEEE