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The use of dynamic reactive power compensation devices such as the STATCOM to improve power quality and Fault Ride-Through capabilities of FSIG wind farms is investigated. Also, the use of VSC-HVDC transmission to isolate the wind farm from impacts of potential faults in the grid side is investigated. Dynamic performance of the FSIG wind farm is explored under several operating conditions, such as...
The paper gives an overview of HVAC and HVDC connection of wind farm to the grid, with an emphasis on voltage source converter (VSC)-based HVDC for large wind farms requiring long distance cable connection. Flexible control capabilities of a VSC-based HVDC system enables smooth integration of wind farm into the power grid network while meeting the grid code requirements (GCR). Operation of a wind...
This paper proposes a new HVDC (High-Voltage DC) transmission topology, its modeling and control method, used for large doubly-fed induction generator (DFIG)-based offshore wind farms. The sending end is a line commutated converter (LCC) with a STATCOM (Static Compensator) while the receiving end is a current source inverter (CSI) using IGBTs. The STATCOM provides stator voltage support for DFIGs,...
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