Analysis on the Operational Characteristics of the Combined Generation System with Power Storage Apparatus that Apply Microcontroller

  • Lim, Jung-Yeol (Dept. of Electrical & Electronics Eng. graduate School of Dongshin Univ) ;
  • Yoon, Seok-Am (Dept. of Electrical & Electronics Eng. graduate School of Dongshin Univ) ;
  • Cha, In-Su (Dept. of Electrical & Electronics Eng. graduate School of Dongshin Univ)
  • 발행 : 2002.03.01

초록

The developments of the solar and the wind power energy are necessary since the future alternative, energies that have no pollution and no limitation are restricted. Currently power generation system of MW scale has been developed, but it still has a flew faults with the weather condition. In order to solve these existing problem combined generation system of photovoltaic(400W) and wind power generation system(400W) was suggested. It combines wind power and solar energy to have the supporting effect from each other. However, since even combined generation system cannot always generate stable output with ever-changing weather condition, power storage apparatus that uses elastic energy of spiral spring to combined generation system was also added far the present study. In an experiment, when output of combined generation system gets lower than 12V(charging voltage), power was continuously supplied to load through the inverter by charging energy obtained from generating rotary energy of spiral spring operates in small scale generator.

키워드

참고문헌

  1. L. A. Schienbein and D. J. Malcolm, 'Design performance and economics of 50kW vertical axis wind turbine', J. of Solar Energy Engineering, vol. 105, no. 11, pp. 418-423, 1983
  2. Z. Salameh and D. Taylor, 'Step-Up Maximum Power Point Tracker for Photovoltaic Arrays', Solar Energy, Vol. 44, No.1, pp. 57-61, 1990
  3. Victorio Arcidiacono, Sando Corsi and Luciano Lambri, 'Maximum Power Point Tracker for Photovoltaic Power Plants', IEEE. pp. 507-512, 1982
  4. Randall C. Maydew and Paul C. Kimas. 'Aerodynamic performance of vertical and horizontal axis turbine'. J, of Energy(USA), vol 5, no. 3, pp. 189-190, 1981
  5. De Vries, 'Fluid Dynamic Aspect of Wind Energy Conversion, Advisory Group for Aerospace Research & Development', AGARD-AG-243, 1979
  6. R. J. Templine, 'Aerodynamic performance theory for the NRC vertical-axis wind turbine' , National Research & Council Canada, Laboratory Technical Report, LTR-LA-160, 1974
  7. B. G. Newman, 'Multiple actuator-disc theory for wind turbines', J. of Wind Engineering & Industry Aerodynamics, vol. 24, no. 3, pp. 215-225, 1980
  8. R. E. Wilson and S. N. Walker, 'Fixed wake theory for vertical axis wind turbine, J. of Fluids Engineering', vol. 105, pp. 389-393, 1983