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A bidirectional DC-DC converter for renewable energy systems

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
To improve the energy quality, most of the renewable energy systems include an energy storage element charged by the bidirectional DC-DC converter. This paper proposes the bidirectional DC-DC converter which employs the two bridge configuration resonant class-E converters on the both sides of the isolating transformer. The low side converter is controlled as step up and the high side converter is controlled as step down. The proposed system is characterized by good dynamic properties and high efficiency because the converter transistors are switched in ZVS conditions. A theoretical analysis to provide relations for system design, and the laboratory model investigations to validate the system characteristic are given in the paper.
Rocznik
Strony
363--368
Opis fizyczny
Bibliogr. 12 poz., rys.
Twórcy
autor
  • Faculty of Electrical Engineering, Bialystok Technical University, 45D Wiejska St., 15-351 Białystok, Poland
Bibliografia
  • [1] T. Kinjo, T. Senjyu, N. Vrasaki, and H. Fujita, “Output leveling of renewable energy by electric double layer capacitor applied for energy storage system”, IEEE Trans. Energy Convers. 21 (1), 221–227 (2006).
  • [2] Y. Hu, J. Tatler, and Z. Chen, “A bidirectional dc/dc power electronic converter for an energy storage devices in an autonomous power system”, Proc. Power Electron. Motion Conf. 1, 171–176 (2004).
  • [3] S. Inoue and H. Akagi. “A bidirectional isolated dc/dc converter as a core circuit of the next generation medium voltage power conversion system”, IEEE Trans. Power Electron. 22 (2), 535–542 (2007).
  • [4] Y.-I. Chiu and L-W. Lin, “A bidirectional dc/dc converter for fuel cell electric vehicle driving system”, IEEE. Trans. Power Electron. 21 (4), 950–958 (2006).
  • [5] Y. Han, M.M. Khan, L. Xu, G.Yao, L. Zhou, and C. Chen, “A new scheme for power factor correction and active filtering for six-pulse converters loads”, Bull. Pol. Ac.: Tech. 57 (2), 157–169 (2009).
  • [6] Y. Jiang, Z. Chen, J. Pan, X.I Zhao, and P. Lee “A novel phaseshift full-bridge converter with voltage-doubler and decoupling integrated magnetics in PV system”, Bull. Pol. Ac.: Tech. 56 (3), 285–293 (2008).
  • [7] M.H. Kheraluwala, R.W. Gascoigne, D.M. Divan, and E.D. Baumann, “Performance characterization of high power dual active bridge dc-to-dc converter”, IEEE Trans. Ind. Appl. 28 (6), 1294–1301 (1992).
  • [8] H. Li, F.Z. Peng, and I.S. Lawler, “A natural ZVS medium – power – bidirectional DC-DC converter with minimum number of devices”, IEEE Trans. Ind. Appl. 39 (2), 525–535 (2003).
  • [9] Z. Kaczmarczyk, “A high-efficiency Class E inverter – computer model, laboratory measurements and Spice simulation”, Bull. Pol. Ac.: Tech. 55 (4), 411–417 (2007).
  • [10] S. Jalbrzykowski and T. Citko, “Soft switching full-bridge DC/DC current converter”, Archives of Electrical Engineering LVI (3), 317–335 (2007).
  • [11] S. Jalbrzykowski and T. Citko, “Current-fed resonant fullbridge boost DC/AC/DC converter, IEEE. Trans on Ind. Electron. 55 (3), 1198–1205 (2008).
  • [12] M.K. Kaźmierczuk, “Class D current-driven rectifiers for resonant DC-DC converters applications”, IEEE Trans. Ind. Electron. 38 (6), 344–354 (1991).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG8-0018-0008
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