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Steady-State Performance Analysis of an Integrated Wind Turbine Generating System in a DC Transmission System with Power Compensation System

  • 투고 : 2011.07.15
  • 심사 : 2011.10.19
  • 발행 : 2012.03.01

초록

An electric power compensation system for a DC transmission system with an integrated wind turbine generator is proposed. The proposed compensation system consists of a synchronous generator and a duplex reactor. This apparatus is connected to the sending-end circuit of the DC transmission system. A set of steady-state equations of the system is first derived. Then, the effect of the duplex reactor, which can eliminate the sending-end grid current distortion due to commutation of the converter, is explored. The relationships among power at the sending-end circuit are also revealed. It is shown that fluctuations in the sending-end grid power due to changes in wind velocities are compensated with the proposed system. Finally, the effects of the sending-end grid conditions on the steady-state characteristics of the system are studied.

키워드

참고문헌

  1. H. Gundlach, "Static frequency converters for shaft generator systems," The Institute of Marine Engineers, London, UK, January 1972.
  2. S. Nishikata, A. Odaka, and Y. Koishikawa, "Steady-state performance analysis of shaft generator systems," in Proc. Power Conversion Conference-Nagaoka, vol. 2, pp.853-858, August 1997.
  3. S. Nishikata, K. Yamashita, F. Mita, and T. Kataoka, "A shaft generator system without output voltage distortion and its steady-state characteristics," in Proc. 6th International Symposium on Marine Engineering, Tokyo vol. 1, TS-28, pp. 169-174, October 2000.
  4. K. Yamashita and S. Nishikata, "Dynamic performance analysis of control systems for a shaft generator system for constant output voltage and constant frequency," International Conference on Electrical Machines (ICEM2002), Brugge, Belgium, August 2002.
  5. F. Tatsuta, T. Tsuji, N. Emi, and S. Nishikata, "Studies on a wind turbine generator system using a shaft generator system," in Proc. 8th International Conference on Electrical Machines and Systems, Nanjing, China, pp. 931-936, September 2005.
  6. K. Yamashita and S. Nishikata, "Dynamic performance analysis of a wind turbine generator system with thyristor inverter connected to a DC transmission system," in Proc. 9th International Conference on Electrical Machines and Systems, Nagasaki, Japan, November 2006.
  7. K. Yamashita and S. Nishikata, "Steady-state Performance Analysis of an Integrated Wind Turbine Generating System in a DC Transmission System with Thyristor Inverter," in Proc. 12th International Conference on Electrical Machines and Systems, Tokyo, Japan, November 2009.
  8. S. Heier, Grid Integration of Wind Energy Conversion Systems, 2nd ed. New York: Wiley, 2006, p. 43.
  9. T. Kataoka and S. Nishikata, "Transient Performance Analysis of Self-Controlled Synchronous Motors," IEEE Trans. Ind. Appl., vol. IA-17, No. 2, pp 152-159 (1981-3/4). https://doi.org/10.1109/TIA.1981.4503918
  10. IEEJ specialists committee for DC transmission, DC Transmission Technology, The Institute of Electrical Engineers of Japan, 1978, p. 15.

피인용 문헌

  1. A Harmonics Elimination Method Using a Three-Winding Transformer for HVDC Transmission Systems vol.54, pp.2, 2018, https://doi.org/10.1109/TIA.2017.2771317