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Doubly-Fed Induction Generator Based Wind Turbines

Om Doubly-Fed Induction Generator Based Wind Turbines

The doubly fed induction generator based wind turbine (DFIG-WT) is currently the dominating concept on the market. However, it suffers from high short-circuit current and DC voltage magnitudes during faults. This requires protection either through protective devices or full disconnection from the grid. This may consequently not subject the DFIG-WT to the requirements of the grid codes. Therefore, a deep understanding of the dynamic response of the DFIG-WT during different types of fault is essential in assessing the fault ride through capability of it. This book offers a very detailed analysis of the dynamic behavior of the DFIG-WT under balanced and unbalanced faults with a mathematical representation of the parameters influencing the behavior. Also new methods are proposed for reduction of the high current magnitudes. Furthermore, a new stability criterion, which considers the system non-linarities, is proposed for assesing the stability of the output current and voltages.

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  • Språk:
  • Engelsk
  • ISBN:
  • 9786202322768
  • Bindende:
  • Paperback
  • Sider:
  • 208
  • Utgitt:
  • 14. august 2018
  • Dimensjoner:
  • 229x152x12 mm.
  • Vekt:
  • 313 g.
  • BLACK NOVEMBER
  Gratis frakt
Leveringstid: 2-4 uker
Forventet levering: 20. desember 2024

Beskrivelse av Doubly-Fed Induction Generator Based Wind Turbines

The doubly fed induction generator based wind turbine (DFIG-WT) is currently the dominating concept on the market. However, it suffers from high short-circuit current and DC voltage magnitudes during faults. This requires protection either through protective devices or full disconnection from the grid. This may consequently not subject the DFIG-WT to the requirements of the grid codes. Therefore, a deep understanding of the dynamic response of the DFIG-WT during different types of fault is essential in assessing the fault ride through capability of it. This book offers a very detailed analysis of the dynamic behavior of the DFIG-WT under balanced and unbalanced faults with a mathematical representation of the parameters influencing the behavior. Also new methods are proposed for reduction of the high current magnitudes. Furthermore, a new stability criterion, which considers the system non-linarities, is proposed for assesing the stability of the output current and voltages.

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