Czasopismo
2014
|
R. 90, nr 10
|
214-220
Tytuł artykułu
Autorzy
Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Porównanie trzech metod sterowania dwupoziomowym czterogałęziowym aktywnym filtrem mocy
Języki publikacji
Abstrakty
This paper presents a comparison of three control strategies that were applied in the simulation model of a four-leg Shunt Active Power Filter based on two-level voltage-source converter. The research considered two classical methods and one proposed as an alternative. In the first an instantaneous power theory is used for the references calculation and hysteresis controllers for gates signals generation. The second employs PI controllers and PWM modulation. The third method is Model Predictive Control with a finite control-states set number (FS-MPC). The comparison is based on simulations performed in Matlab-simulink.
W artykule przedstawiono porównanie trzech metod sterowania dwupoziomowym czterogałęziowym aktywnym filtrem mocy. Dwie z metod stanowią rozwiązania klasyczne, natomiast trzecia metoda proponowana jest, jako rozwiązaniem alternatywne. W pierwszej metodzie zastosowano teorię mocy chwilowych oraz regulatory histerezowe; druga metoda bazuje na regulatorach PI oraz modulacji PWM. Trzecia metoda to sterowanie predykcyjne wykorzystujące model o ograniczonej ilości stanów (FS-MPC). Porównanie dokonane zostało na podstawie symulacji w programie Matlab-Simulink.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
214-220
Opis fizyczny
Bibliogr. 19 poz., rys., tab., wykr.
Twórcy
autor
- Faculty of Electrical Engineering, Warsaw University of Technology, ul. Koszykowa 75 00-662 Warsaw, antoniek@ee.pw.edu.pl
autor
- Faculty of Electrical Engineering, Warsaw University of Technology, ul. Koszykowa 75 00-662 Warsaw, malin@isep.pw.edu.pl
Bibliografia
- [1] Akagi H., New trends in Active Filters for power conditioning,IEEE Trans. Ind. Applications, 1A-32 (1996), no. 6, 1312-1322.
- [2] Strzelecki R., Supronowicz H., Współczynnik mocy w systemach zasilania prądu przemiennego i metody jego poprawy, Oficyna Wydawnicza Warsaw University of Technology, Warsaw (2000);
- [3] Quinn C.A., Mohan N., Active filtering of harmonic currents in three-phase, four-wire systems with three-phase and singlephase nonlinear loads, APEC’92 – Applied Power Electronics Conf., (1992), 829-836.
- [4] Aredes M., Watanabe E.H., New control algorithms for series and shunt three-phase four-wire active power filters, IEEE Trans. Power Delivery, vol. 10 (1995), 1649-1656.
- [5] Malesani L., Tenti P., A nowel hysteresis control method for current controlled VSI PWM inverters with constant modulation frequency, IEEE Trans. Ind. Applicat., vol. 26 (1990), 88-92.
- [6] Yao Q., Holmes D.G., A simple, nowel method for variablehysteresis-band current control of a three phase inverter with constant switching frequency, conf. Rec. IEEE-IAS Annu. Meeting, (1993), 1122-1129.
- [7] Bhattacharya S., Frank T.M., Divan D.M., Banerjee B., Active filter system implementation, IEEE indystry Applications Magazine, Sept./Oct. (1998), 47-63.
- [8] Akagi H., Modern Active Filters and traditional Passive Filters, Bulletin of the Polish Acadamy of Sciences, Technical Sciences, vol. 54 (2006), no. 3.
- [9] Shao Z., Chen C., Huang Y., Inverse control of three phase four leg Active Power Filter, Computer Science and Information Technology (ICCSIT), 2010 3rd IEEE International Conference on, vol. 8 (2010), 302-307.
- [10] Buso S., Malesani L., Mattavelli P., Comparison of current control techniques for Active Filter applications, IEEE trans. On Ind. Electronics, Vol. 45. (1998), no. 5.
- [11] Rodriguez J., Pontt J., Silva C.A., Correa P., Lezana P., Cortes P., Ammann U., Predictive Current Control of a Voltage Source Inverter, IEEE Trans. on Industrial Elektronics, Vol. 54 (2007), No. 1, 495-503.
- [12] Kazmierkowski M.P., Current control techniques for threephase voltage-source PWM converters: A survey, IEEE Trans. on Industrial Elektronics, Vol. 45 (1998), no. 5, 691-703.
- [13] Cortes P., Kazmierkowski M.P., Kennel R.M., et al., Predictive Control In Power Electronics and Drives, IEEE Trans. on Industrial Electronics, Vol. 55, Issue: 12, pp. 4312-4324, 2008, cited WoS: 133.
- [14] Kouro S., Cortes P., Vargas R., Ammann U., Rodriguez J., Model Predictive Control – A Simple and Powerful Method to Control Power Converters, IEEE Trans. on Industrial Electronics, Vol. 56 (2009), no. 6, 1826-1838.
- [15] Rodriguez J. Perez, Cortes P., Predictive Control Of Power Converters And Electrical Drives, Wiley-IEEE Press (2012).
- [16] Wojciechowski D., Novel Controller for 3-Phase Active Power Filter with LCL coupling circuit, Przegląd Elektrotechniczny, Vol. 85 (2009), no. 10, 208-212.
- [17] Wang Xiaogang, Xie Yunxiang, Shuai Dingxin, Three-Phase Four-Leg Active Power Filter Based on Nonlinear Optimal Predictive Control, Proceedings of the 27th Chinese Control Conference, Vol. 2 (2008), 217-222.
- [18] Rivera M., Yaramasu V., Llor A., Rodriguez J., Wu B., Fadel M., Digital Predictive Current Control of a Three-Phase Four- Leg inverter, Trans. on Industrial Electronics, issue: 99 (2012), 1.
- [19] Xiao-gang W., Yun-xiang X., Ding-xin S., Simplified Model Predictive Control for a Shunt Active Power Filter, Power Electronics Specialists Conference, PESC 2008 (2008), 3279-3283.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-85415da9-687b-4ab0-a6bb-1bff11acf34b