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A Comprehensive Study of Voltage Balancing Problem of Cascaded H-bridge Inverter for Power Quality Conditioner

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PL
Analiza problemu równoważenia napięcia w kaskadowo połączonych przekształtnikach typu H
Języki publikacji
EN
Abstrakty
EN
In recent years, multilevel technology has become an effective and practical solution for moderate and high voltage application field. In all multilevel technology, cascade multilevel inverters have become the major circuits used in power quality conditioners. Evidently,the voltage balancing problem of DC capacitors of cascade inverters is a key problem to the power quality conditioners. This paper mainly focuses on exploring the hypostasis of various voltage balancing control methods. A comprehensive theoretical analysis of voltage balancing control fundament is presented. The issue of voltage balance is discussed from output pulses of H-bridge inverters point of view, and a model for analyzing the charge and discharge process of H-bridge DC capacitor is established. Furthermore, all regulation means of output pulses of H-bridge inverters for redistributing active power is reported and quantified. The simulation results illustrate that the research is satisfactory.
PL
Zaprezentowano teoretyczną analizę sterowania jakością napięcia w kaskadowo połczonych przekształtnikach mostkowych typu H. Przeanalizowano proces ładowania i rozładowania kondensatora. Przedstawiono badania i symulacje na przykładzie kondycjonera jakości energii.
Rocznik
Strony
317--326
Opis fizyczny
Bibliogr. 19 poz., rys.
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Bibliografia
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  • [6] Cristian Lascu, Lucian Asiminoaei, Ion Boldea , and Frede Blaabjerg. Frequency Response Analysis of Current Controllers for Selective Harmonic Compensation in Active Power Filters. IEEE Trans Industry Electronics, 2009, 56(2): 337-347.
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  • [9] Rudnick H, Dixon J, Moran L. Delivering clean and pure power. IEEE Power and Energy Magazine.2003, 1(5):32-40.
  • [10] F Z Peng, J S Lai, J W McKeever, and J VanCoevering. A multilevel voltage-source inverter with separate dc sources for static var generation. IEEE Trans Industry Applications,1996, 32(5): 1130-1138.
  • [11] Hirofumi Akagi, Shigenori Inoue, and Tsurugi Yoshii. Control and performance of a transformerless cascade PWM STATCOM with star configuration. IEEE Trans Industry Applications,2007 43(4): 1041-1049.
  • [12] Laxman Maharjan, Shigenori Inoue, and Hirofumi Akagi. A transformerless energy storage system based on a cascade multilevel PWM converter with star configuration. IEEE Trans Industry Applications,2008 44(5): 1621-1630.
  • [13] Chen Junling, Yin Zhizhu, Wang Ping and Li Yaohua. Capacitor voltage balancing control of cascaded multilevel inverter for high-power active power filters. Proceedings of the 2008 IEEE DRPT, 2008, pp. 1683-1687.
  • [14] Alan J Watson, Patrick W Wheeler, and Jon C Clare. A Complete Harmonic Elimination Approach to DC Link Voltage Balancing for a Cascaded Multilevel Rectifier.IEEE Trans Industry Applications,2007 54(6): 2646-2653.
  • [15] Geng Wang, Yongdong Li, Xiaojie You. A novel control algorithm for cascade shunt active power filter. Proceedings of the 2004 IEEE PESC, 2004, pp. 771-775.
  • [16] Fujii K, De Doncker R W. A Novel DC-link Voltage Control of PWM-Switched Cascade Cell Multi-Level Inverter Applied to STATCOM. Proceedings of the 2005 IEEE IAS, 2005, pp. 961-967.
  • [17] Sirisukprasert S, Huang A Q, Lai J S. Modeling, analysis and control of cascaded-multilevel converter-based STATCOM. Proceedings of the 2003 IEEE PESGM,2003, pp. 13-17.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOK-0039-0072
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