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Impact of distributed generation on three-phase voltage dips

Lieven Degroote (UGent) , Bert Renders (UGent) , Kurt Stockman (UGent) , Bart Meersman (UGent) , Tine Vandoorn (UGent) and Lieven Vandevelde (UGent)
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Abstract
The interaction between three-phase inverter-connected distributed generation (DG) units and three-phase voltage dips will be studied in this paper. This interaction is determined by the current control strategy of the inverter. The control strategies considered in this paper are the control strategy with damping resistance and the classical sinusoidal control strategy. A harmonic load flow program developed by the authors is used to investigate the retained voltage in case of a voltage dip. It is proven that the inverter with damping control strategy supports the voltage during the dip.
Keywords
voltage dips, converter control strategies, Distributed generation

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Chicago
Degroote, Lieven, Bert Renders, Kurt Stockman, Bart Meersman, Tine Vandoorn, and Lieven Vandevelde. 2010. “Impact of Distributed Generation on Three-phase Voltage Dips.” In i-SUP 2010 : Innovation for Sustainable Production, Proceedings, ed. Guy Vekemans.
APA
Degroote, L., Renders, B., Stockman, K., Meersman, B., Vandoorn, T., & Vandevelde, L. (2010). Impact of distributed generation on three-phase voltage dips. In G. Vekemans (Ed.), i-SUP 2010 : Innovation for Sustainable Production, Proceedings. Presented at the Innovation for Sustainable Production : i-SUP 2010.
Vancouver
1.
Degroote L, Renders B, Stockman K, Meersman B, Vandoorn T, Vandevelde L. Impact of distributed generation on three-phase voltage dips. In: Vekemans G, editor. i-SUP 2010 : Innovation for Sustainable Production, Proceedings. 2010.
MLA
Degroote, Lieven, Bert Renders, Kurt Stockman, et al. “Impact of Distributed Generation on Three-phase Voltage Dips.” i-SUP 2010 : Innovation for Sustainable Production, Proceedings. Ed. Guy Vekemans. 2010. Print.
@inproceedings{934874,
  abstract     = {The interaction between three-phase inverter-connected distributed generation (DG) units and three-phase voltage dips will be studied in this paper. This interaction is determined by the current control strategy of the inverter. The control strategies considered in this paper are the control strategy with damping resistance and the classical sinusoidal control strategy. A harmonic load flow program developed by the authors is used to investigate the retained voltage in case of a voltage dip. It is proven that the inverter with damping control strategy supports the voltage during the dip.},
  author       = {Degroote, Lieven and Renders, Bert and Stockman, Kurt and Meersman, Bart and Vandoorn, Tine and Vandevelde, Lieven},
  booktitle    = {i-SUP 2010 : Innovation for Sustainable Production, Proceedings},
  editor       = {Vekemans, Guy},
  language     = {eng},
  location     = {Bruges, Belgium},
  title        = {Impact of distributed generation on three-phase voltage dips},
  year         = {2010},
}