IJREE – Volume 5 Issue 3 Paper 3

POWER CONDITIONING SYSTEM FOR WIND ENERGY APPLICATIONS

Author’s Name :  R Elangovan | Dr D Sabapathi

Volume 05 Issue 03  Year 2018  ISSN No: 2349-2503  Page no: 9 – 12

12

Abstract:

Wind generation (WG) is that the maximum extensive renewable vitality resource within the world. However, this operation certainly results in a rise within the issues caused by WG, e.g. frequency oscillations, power fluctuations or voltage variations. To beat these issues, the employment of an influence acquisition system (PCS) not to mention a metal reaction flow battery (VRFB) is projected during this study. The PCS contains of a dispersal static synchronous compensator coupled to a dc/dc chopper. The PCS/VRFB careful model is conferred and a three-level system is developed. A performance characteristic of the device and the dynamic response of the PCS/VRFB is evaluated through simulation tests, are obtained by suggests that of the variation of the capacity references. The results obtained from the system projected permits mitigating the issues caused by alternative energy generation.

References:

  1. H. Akagi, New Trends in Active Filter for power conditioning, IEEE Trans. Ind. Application, vol. 32, no. 6, pp. 1312-1322, 1996
  2. Gyugyi, L.G., Power electronics in electric utilities,  static VAR compensators, Proc. IEE, 876(4), pp.483-494, 1988
  3. Juan W. Dixon, Jaime J. Garcia and Luis Moran. Control System for Three-phase Power Filter which Simultaneously Compensates Power Factor and Unbalanced Loads. IEEE Trans. On Industrial electronics, vol. 42, no. 6, pp. 636-641, 1995
  4. H. Fujita and H. Akagi, The Unified Power Quality Conditioner: The Integration of Series- and shunt- active filters, IEEE Trans. Power Electronics, vol. 1, no. 2, pp. 3 15-322, 1998
  5. Yunping Chen, Xiaoming Zha and Jin Wang etc. Unified Power Quality Conditioner (UPQC): The Theory, Modeling and Application. Power System Technology, 2000 proceedings. Power Con 2000. International Conference on, vol. 3, pp. 1329-1333, 2000
  6. Mauricio Aredes, Klemens Heumann and Edson H. Walandble. An Universal Active Power Line Conditioner. IEEE Trans. On Power Delivery vol. 13, no. 2, pp. 545-55 1, 1998