Title :
Coordinated control of an HVDC link and doubly fed induction generators in a large offshore wind farm
Author :
Xiang, Dawei ; Ran, Li ; Bumby, Jim R. ; Tavner, Peter J. ; Yang, Shunchang
Author_Institution :
Dept. of Electr. Eng., Chongqing Univ., China
Abstract :
Doubly fed induction generators (DFIGs) are an economic variable-speed solution for large wind turbines while high-voltage dc (HVdc) transmission is being considered for the grid connection of some offshore wind farms. This paper analyzes the need for coordinating the control of the DFIGs and the HVdc link so that the two topologies can work together, giving system designers and operators a choice that may be useful in some applications. It is desired that individual generators be controlled for power tracking in a way similar to that used when they are connected directly to an ac grid, although a grid voltage reference for the DFIG control is no longer available as an independent source in this case. The study shows that machine control should explicitly maintain the flux level, which then allows the HVdc link to regulate the local system frequency and, indirectly, voltage amplitude. Interactions between DFIGs and the HVdc link are investigated and simulations performed to verify the proposed control strategy.
Keywords :
HVDC power transmission; asynchronous generators; frequency control; machine control; offshore installations; power generation control; power transmission control; wind power plants; wind turbines; HVDC link; coordinated control; doubly fed induction generators; economic variable-speed solution; frequency regulation; generator control; grid voltage reference; high-voltage dc transmission; large offshore wind farm; machine control; power tracking; wind turbines; AC generators; Control systems; HVDC transmission; Induction generators; Mesh generation; Power generation economics; Topology; Voltage control; Wind farms; Wind turbines; Doubly fed induction generator; frequency; high-voltage dc (HVdc) transmission; real and reactive power; voltage; wind energy;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2005.858785