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Unified Power Quality Conditioner for Compensating Voltage Interruption

  • Han, Byung-Moon (Department of Electrical Engineering, Myongji University) ;
  • Cho, Bo-Hyung (School of Electrical Engineering and Computer Science, Seoul National University) ;
  • Sul, Seung-Ki (School of Electrical Engineering and Computer Science, Seoul National University) ;
  • Kim, Jae-Eon (School of Electrical & Computer Engineering, Chungbuk National University)
  • Published : 2006.12.01

Abstract

This paper proposes a new configuration for the Unified Power Quality Conditioner, which has a DC/DC converter with super-capacitors for energy storage. The proposed UPQC can compensate the reactive power, harmonic current, voltage sag and swell, voltage imbalance, and voltage interruption. The performance of the proposed system was analyzed through simulations with PSCAD/EMTDC software. The feasibility of system implementation is confirmed through experimental works with a prototype. The proposed UPQC has ultimate capability to improve the power quality at the point of installation on power distribution systems and industrial power systems.

Keywords

References

  1. N. G. Hingorani, 'Introducing Custom Power,' IEEE Spectrum, pp. 41-48, June 1995 https://doi.org/10.1109/6.387140
  2. Jos Arrillaga, Math H. J. Bollen, Neville R. Watson, 'Power Quality Following Deregulation', Proceedings of the IEEE, Vol. 88, No.2, Feb. 2000
  3. Prodanovic. M, Green. T. C, 'Control and filter design of three-phase inverters for high power quality grid connection', IEEE Trans. on Power Delivery, Vol. 18, No.1, pp. 373-380, Jan. 2003 https://doi.org/10.1109/TPEL.2002.807166
  4. W. Edward Reid, 'Power Quality Issues Standards and Guidelines'. IEEE Transactions on Industry Applications, Vol. 32, No.3, May/June 1996
  5. Douglas S. Dorr, 'Point of Utilization Power Quality Study Results', IEEE Transactions on Industry Applications, Vol. 31, No. 4, July/August 1995
  6. Hideaki Fujita, Hirofumi Akagi, 'The Unified Power Quality Conditioner: The Integration of Series- and Shunt- Active Filters', IEEE Transactions on Power Electronics, Vol. 13, No.2, March 1998
  7. 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
  8. M. Aredes, K. Heumann, E. H. Watanabe, 'An universal active power line conditioner', IEEE Trans. on Power Delivery, Vol. 13, No.2, pp. 545-551,Apr 1998 https://doi.org/10.1109/61.660927
  9. A. Bendre, S. Norris, D. Divan, I. Wallace, R. Gascoigne, 'New high power DC-DC converter with loss limited switching and lossless secondary clamp', IEEE Trans. on Power Electronics, Vol. 18, No.4, pp. 1020-1027, July 2003 https://doi.org/10.1109/TPEL.2003.813748
  10. J. Jacobs, A. Averberg, R. De Doncker, 'A novel three-phase DC/DC converter for high-power applications', IEEE Conf. on PESC 04, Vol. 3, 20-25, pp. 1861-1867, June 2004

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