Accès libre

Model Predictive Control of Four-Leg Three-Level Flying Capacitor Converter: Influence of Model Parameter Mismatch

À propos de cet article

Citez

Akagi, H. (1996). New Trends in Active Filters for Power Conditioning. IEEE Transactions on Industry Applications, 32(6), pp. 1312-1322.10.1109/28.556633Search in Google Scholar

Akagi, H. (2006). Modern Active Filters and Traditional Passive Filters. Bulletin of the Polish Academy of Sciences. Technical Sciences, 54, pp. 255-269.Search in Google Scholar

Akagi, H., Watanabe, E. H. and Aredes, M. (2007). Instantaneous Power Theory and Applications to Power Conditioning. USA: IEEE Press-Wiley (IEEE Press Series on Power Engineering). [ISBN: 978-0-470-10761-4]10.1002/0470118938Search in Google Scholar

Antoniewicz, K. and Jasinski, M. (2016a). Experimental comparison of hysteresis based control and finite control state set Model Predictive Control of Shunt Active Power Filter,” In: 2015 Selected Problems of Electrical Engineering and Electronics (WZEE), Kielce, Poland, 17-19 September 2015.10.1109/WZEE.2015.7394019Search in Google Scholar

Antoniewicz, K. and Jasiński, M. (2016b). Nowe sterowanie predykcyjne 3-poziomowym 4-gałęziowym równoległym filtrem aktywnym - zastosowanie modelu o ograniczonej liczbie stanów. Przeglad Elektrotechniczny, 92(4), pp. 74-78.10.15199/48.2016.04.18Search in Google Scholar

Antoniewicz, K. and Rafal, K. (2017). Model Predictive Current Control Method for Four-Leg Three-Level Converter Operating as Shunt Active Power Filter and Grid Connected Inverter. Bulletin of the Polish Academy of Sciences Technical Sciences, 65(5), pp. 601-607.10.1515/bpasts-2017-0065Search in Google Scholar

Defay, F., Llor, A.-M. and Fadel, M. (2008). A Predictive Control With Flying Capacitor Balancing of a Multicell Active Power Filter. IEEE Transactions on Industrial Electronics, 55(9), pp. 3212-3220.10.1109/TIE.2008.927989Search in Google Scholar

Falkowski, P. and Sikorski, A. (2018). Finite Control Set Model Predictive Control for Grid-Connected AC- DC Converters With LCL Filter. IEEE Transactions on Industrial Electronics, 65(4), pp. 2844-2852.10.1109/TIE.2017.2750627Search in Google Scholar

Grodzki, R., Sikorski, A. and Jasiński, M. (2011). Predykcyjne algorytmy sterowania trójfazowym przekształtnikiem AC/DC. Przegląd Elektrotechniczny, 87(6), pp. 105-110.Search in Google Scholar

Orlowska-Kowalska, T., Blaabjerg, F. and Rodriguez, J. (2014). Advanced and intelligent control in power electronics and drives. In: J. Kacprzyk, ed., Studies in Computational Intelligence. Switzerland: Springer, pp. 181-265.10.1007/978-3-319-03401-0Search in Google Scholar

Rodriguez, J., Kazmierkowski, M. P., Espinoza, J. R., Zanchetta, P., Abu-Rub, H., Young, H. A. and Rojas, C. A. (2013). State of the Art of Finite Control Set Model Predictive Control in Power Electronics. IEEE Transactions on Industrial Informatics, 9(2), pp. 1003-1016.10.1109/TII.2012.2221469Search in Google Scholar

Sobanski, P. (2017). Modified Scheme of Predictive Torque Control for Three-Phase Four-Switch Inverter-Fed Motor Drive With Adaptive DC-Link Voltage Imbalance Suppression. Power Electronics and Drives, 2(37), pp. 93-101.Search in Google Scholar

Strzelecki, R. M. and Supronowicz, H. (2000). Współczynnik mocy w systemach zasilania prądu przemiennego i metody jego poprawy. Warsaw: Oficyna Wydawnicza Politechniki Warszawskiej. pp. 11-69.Search in Google Scholar

eISSN:
2543-4292
ISSN:
2451-0262
Langue:
Anglais