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Enhancing the Performance of the Marine and Tidal Current Converters Using DC-DC Boost Converter 被引量:1

Enhancing the Performance of the Marine and Tidal Current Converters Using DC-DC Boost Converter
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摘要 Due to the highly demand on the renewable energy sources as a free and a clean power resource, extracting energy from unsteady flow using marine and tidal current turbines has a distinct focusing nowadays. For their resource characteristic, extracting energy from marine/tidal current needs a simple and robust converter, which could overcome the drawbacks of the mechanical system such as gearbox and enhance conversion system stability. In this paper a new AC-DC-AC conversion system has been proposed. The new conversion system contains a middle stage DC-DC boost converter, which boost the generated rectified DC voltage higher enough that can enable the PWM inverter to generate the required voltage with the synchronized frequency. In order to investigate the efficient performance of the proposed conversion system especially at low current speed compared to the conventional one, different operating conditions have been studied. Moreover, the effect of including boost converter on the THD (total harmonic distortion) has also been checked. The new conversion system presents its capability to enhance and improve system performance not only with low current speed but also with high current speed.
出处 《Journal of Energy and Power Engineering》 2012年第3期478-484,共7页 能源与动力工程(美国大卫英文)
关键词 Renewable energy marine and tidal current energy AC-DC-AC converter DC-DC boost converter. 升压转换器 DC-DC 海洋潮汐 电流转换器 性能 转换系统 PWM逆变器 电流速度
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  • 1K. Yuen, K. Thomas, M. Grabbe, P. Deglaire, M. Bouquerel, D. Osterberg, et al., Matching a permanent magnet synchronous generator to a fixed pitch vertical axis turbine for marine current energy conversion, IEEE Journal of Oceanic Eng. 34 (1) (2009) 24-31.
  • 2European Commission, The Exploitation of Tidal Marine Currents, Technical Report EUR 16683EN, 1996.
  • 3I.T. Power, Seacore, J. Kesterman, G. Kassel, Sea Flow-World's First Pilot Project for the Exploitation of Marine Currents at a Commercial Scale, Final Publishable Report, pp. 1-34, 2005.
  • 4S.E.B. Elghali, R. Balme, K.L. Saux, M.E.H. Benbouzid, J.F. Charpentier, F. Hauville, et al., A simulation model for the evaluation of the electrical power potential harnessed by a marine current turbine, IEEE Journal of Oceanic Engineering 32 (4) (2007) 786-789.
  • 5J.M. Carrasco, L.G. Franquelo, J.T. Bialasiewicz, E. Galvan, R.C.P. Guisado, J.l. Leon, et al., Power electronic systems for the grid integration of renewable energy sources: a survey, IEEE Transactions on Industrial Electronics 53 (4) (2006) 1002-1016.
  • 6J. Ribrant, L. Bertling, Survey of failures in wind power systems with focus on Swedish wind power plants during 1997-2005, IEEE Transaction on Energy Conversion 22 (1) (2007) 167-173.
  • 7Y. Chen, K.M. Smedley, A cost effective single stage inverter with maximum power point tracking, IEEE Trans. on Power Electronic 19 (5) (2004) 1289-1294.
  • 8Y. Chen, K. Smedley, Three-phase boost-type grid connected inverter, IEEE Transaction on Power Electronics 23 (5) (2008) 2301-2309.
  • 9A. Andeica, S. Bacha, D. Roye, I.E. Otadui, 1. Munteanu, Micro-hydro water current turbine control for grid connected or islanding operations, in: Proceeding of IEEE Annual Power Electronics Specialists Conference, June, 2008, pp. 957-962.
  • 10M.H. Rashid, Power Electronic Handbook, Academic Press, Canada, 2001.

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