Connection and disconnection sequence for variable speed wind turbine having an exciter machine and a power converter not connected to the grid
A variable speed wind turbine having a doubly fed induction generator (DFIG), includes an exciter machine mechanically coupled to the DFIG and a power converter placed between a rotor of the DFIG and the exciter machine. Thus, the power converter is not directly connected to the grid avoiding the introduction of undesired harmonic distortion and achieving a better power quality fed into the utility grid. Moreover, the variable speed wind turbine includes a power control and a pitch regulation.
1. A variable speed wind turbine comprising:
a rotor including at least one blade;
a drive train coupled to the rotor, the drive train including at least a doubly fed induction generator (DFIG), said DFIG having at least a stator connectable to a power grid;
at least an exciter machine coupled to the drive train; and
at least a power conversion device isolated from the grid and electrically coupled to a rotor of the doubly fed induction generator and to the exciter machine to transfer electrical power between the rotor and the exciter machine;
a connection system which controls the DFIG for connection to the power grid; and
a disconnection system which controls the DFIG for disconnection from the power grid.
2. The variable speed wind turbine of claim 1 , wherein the connection system magnetizes the DFIG at a first generator speed using a voltage regulation mode,
wherein the connection system connects the stator to the power grid at a second generator speed equal to or higher than the first generator speed,
wherein the connection system ramps up power of the stator after the stator is connected to the power grid.
3. The variable speed wind turbine of claim 1 wherein the disconnection system ramps down power of the stator of the doubly fed induction generator,
wherein the disconnection system disconnects the stator of the doubly fed induction generator from the grid after ramping down the power of the stator;
wherein the disconnection system shut down a rotor side power converter after the stator is disconnected from the power grid.