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Research the Design Method of Hybrid Cascade Multilevel Structure for the APFs in Moderate-voltage Grid

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PL
Projektowanie hybrydowych kaskadowych wielopoziomowych układów dla Energetycznych Filtrów Aktywnych
Języki publikacji
EN
Abstrakty
EN
A design method about how to design main circuits of active power filters(APF) with hybrid cascade multilevel structure is proposed in this paper. Through careful research, the combination of these cascade H-bridge modules is properly chosen and the number of high-frequency module is reasonably selected. Following eight steps described in the paper, a reasonable design process of the combination of these modules can be Got easily for a given condition. Through the reasonable combination of hybrid cascaded modules made up of high and low voltage devices, the design method that how to design the main circuit of this APF can be used to different voltage class in moderate voltage grid. Simulation results validate the rightness of the proposed method.
PL
W artykule przedstawiono zastosowanie hybrydowego kaskadowego wielopoziomowego układu w aktywnym filtrze mocy (ang. Active Power Filter). Opisany został sposób doboru modułów wykorzystanych mostków typu H oraz wyniki symulacyjne układu.
Rocznik
Strony
182--187
Opis fizyczny
Bibliogr. 21 poz., rys., tab.
Twórcy
autor
autor
autor
  • School of Electrical Engineering, Xi'an Jiaotong University, No.28 Xianning West Road, Xi'an, Shaanxi, 029-82665223, China, yjhe@mail.xjtu.edu.cn
Bibliografia
  • [1] Rodriguez J, Lai J S, Peng F Z. Multilevel inverters: A survey of topologies, control, and application. IEEE Trans Industry Electronics, 2002 ,49(8): 724-738.
  • [2] Damiano A, Marchesoni M, Marongiu I, Taffone A. Optimization of harmonic performances in multilevel converter structures. Proceeding of the 1997 IEEE ISIE, 1997 , 341-346.
  • [3] Manguelle J S, Mariethoz S, Veenstra M, Rufer A. A generalized design principle of a uniform step asymmetrical multilevel converter for high power conversion. EPE Rec, 2001, CD-ROM.
  • [4] Rufer A, Veenstra M. Asymmetric multilevel converter for high resolution voltage phasor generation. EPE Rec, 1999, CDROM.
  • [5] Lipo T A, Manjrekar M D. Hybrid topology for multilevel power conversion. U.S. Patent 6 005 788, 1999.
  • [6] Liu H W, Tolbert L M, Khomfoi S, Ozpineci B, Du Z. Hybrid cascade multilevel inverter with pwm control method. Proceedings of the 2008 IEEE PESC, 2008,162-166.
  • [7] Xu Y, Zou Y P, Chen W, et al. A novel STATCOM based on hybrid cascade multilevel inverter. Proceedings of the 2008 IEEE ICIT, 2008,1-6.
  • [8] Lopez M, Moran L T, Espinoza J C,et al. Performance analysis of a hybrid asymmetric multilevel inverter for high voltage active power filter applications. Proceedings of the 2003 IEEE IECON, 2003, 1050-1055.
  • [9] Miranda H,Cardenas H,Perea J, et al. A hybrid multilevel inverter for shunt active filter using space-vector control. Proceedings of the 2004 IEEE PESC, 2004, 3541-3546.
  • [10] Khomfoi S, Aimsaard C. A 5-level cascade hybrid multilevel inverter for interfacing with renewable energy resources. Proceedings of the 2009 ECTI-CON, 2009, 284-287.
  • [11] Akagy H. Trends in active power line condition. IEEE Trans Power Electronics, 1994, 9(3):263-268.
  • [12] Mohamed Rashed, , Christian Klumpner, Greg Asher. Hybrid Cascaded Multilevel Converter with Integrated Series Active Power Filter for Interfacing Energy Storage System to Medium Voltage Grid[C]. Proceedings of the 2010 IEEE IPEC, 2010, 1236-1243.
  • [13] Xiaofeng Wang, Yan Deng, Xiangning He, Wuhua Li. Active Power Filter Based on Four-leg Hybrid-Clamped Technique. Proceedings of the 2007 IEEE PESC, 2007, 458 - 463.
  • [14] Rudnick, H., Dixon, J., Moran, L. Delivering clean and pure power. IEEE Power and Energy Magazine.2003,1(5):32~40
  • [15] Tan P C, Loh P C, Holmes D G.A robust multilevel hybrid compensation system for 25-kV electrified railway applications. IEEE Trans Power Electronics, 2004, 19(4):1043-1052.
  • [16] Ortuzar M E, Carmi R E, Dixon J W et al. Voltage-source active power filter based on multilevel converter and ultracapacitor DC link. IEEE Trans Industrial Electronics, 2006, 53(2): 477-485.
  • [17] L A Silva,S P Pimentel, J A Pomilio. Nineteen-level Active Filter System using Asymmetrical Cascaded Converter with DC Voltages Control. Proceedings of the 2005 IEEE PESC, 2005, 303-308.
  • [18] Rech C, Pinheiro J R. Hybrid multilevel converters: unified analysis and design considerations. IEEE Trans Industrial Electronics,2007,54(2):
  • [19] 1092-1104.
  • [20] Manjrekar M D,Steimerand P K,Lipo T A. Hybrid multilevel power conversion system: A competitive solution for highpower applications. IEEE Trans Industry Applications, 2000,36(3):834-841.
  • [21] Ding K, Zou Y P, Wang Z, Wu Z C,et al. A novel hybrid diodeclamp cascade multilevel converter for high power application. Proceedings of the 2004 IEEE IAS, 2004,820-827.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS4-0004-0081
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