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V. Akhmatov, H. Knudsen, M. Bruntt, A. Nielsen, J. Pedersen, N. Poulsen (2000)
A Dynamic Stability Limit of Grid Connected Induction Generators
A. Hansen, P. Sørensen, F. Iov, F. Blaabjerg (2003)
Initialisation of Grid-Connected Wind Turbine Models in Power-System SimulationsWind Engineering, 27
P. Sørensen, A. Hansen, P. Christensen, M. Mieritz, J. Bech, B. Bak‐Jensen, H. Nielsen (2003)
Simulation and verification of transient events in large wind power installations
(2002)
Wind Turbines As Power Plants
C. Jauch, A. Hansen, P. Sørensen, F. Blaabjerg (2004)
Simulation Model of an Active-Stall Fixed-Speed Wind Turbine ControllerWind Engineering, 28
P. Sørensen, A. Hansen, L. Janosi, J. Bech, B. Bak‐Jensen (2002)
Simulation of interaction between wind farm and power system
P. Sørensen, A. Hansen, P. Rosas (2002)
Wind models for simulation of power fluctuations from wind farmsJournal of Wind Engineering and Industrial Aerodynamics, 90
A. Hansen, P. Sørensen, F. Blaabjerg, John Becho (2002)
Dynamic Modelling of Wind Farm Grid InteractionWind Engineering, 26
This paper describes the simulation model of a controller that enables an active-stall wind turbine to ride through transient faults. The simulated wind turbine is connected to a simple model of a power system. Certain fault scenarios are specified and the turbine shall be able to sustain operation in case of such faults. The design of the controller is described and its performance assessed by simulations. The control strategies are explained and the behaviour of the turbine discussed.
Wind Engineering – SAGE
Published: Jan 1, 2005
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