Technical impacts of high penetration levels of wind power on power system stability. Flynn, D., Rather, Z., Ardal, A., D’Arco, S., Hansen, A. D., Cutululis, N. A., Sorensen, P., Estanquiero, A., Gómez-Lázaro, E., Menemenlis, N., Smith, C., & Wang, Y. Wiley Interdisciplinary Reviews: Energy and Environment, 6(2):1–19, John Wiley & Sons Ltd, Chichester, UK, March/April, 2017.
doi  bibtex   
@article{Flynn:WENE:2017,
  address =       {Chichester, UK},
  author =        {D. Flynn and Z. Rather and A. Ardal and S. D’Arco and
                   A. D. Hansen and N. A. Cutululis and P. Sorensen and
                   A. Estanquiero and E. Gómez-Lázaro and
                   N. Menemenlis and C. Smith and Y. Wang},
  journal =       {Wiley Interdisciplinary Reviews: Energy and
                   Environment},
  month =         {March/April},
  number =        {2},
  pages =         {1--19},
  publisher =     {John Wiley \& Sons Ltd},
  title =         {Technical impacts of high penetration levels of wind
                   power on power system stability},
  volume =        {6},
  year =          {2017},
  doi =           {10.1002/wene.216},
  issn =          {2041-840X},
}

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