Title :
Enhanced Control of a DFIG-Based Wind-Power Generation System With Series Grid-Side Converter Under Unbalanced Grid Voltage Conditions
Author :
Jun Yao ; Hui Li ; Zhe Chen ; Xianfeng Xia ; Xiyin Chen ; Qing Li ; Yong Liao
Author_Institution :
State Key Lab. of Power Transm. Equip. & Syst. Security & New Technol., Chongqing Univ., Chongqing, China
Abstract :
This paper presents an enhanced control method for a doubly fed induction generator (DFIG)-based wind-power generation system with series grid-side converter (SGSC) under unbalanced grid voltage conditions. The behaviors of the DFIG system with SGSC during network unbalance are described. By injecting a series control voltage generated from the SGSC to balance the stator voltage, the adverse effects of voltage unbalance upon the DFIG, such as stator and rotor current unbalances, electromagnetic torque, and power pulsations, can be removed, and then the conventional vector control strategy for the rotor-side converter remains in full force under unbalanced conditions. Meanwhile, three control targets for the parallel grid-side converter (PGSC) are identified, including eliminating the oscillations in the total active power or reactive power, or eliminating negative-sequence current injected to the grid. Furthermore, a precise current reference generation strategy for the PGSC has been proposed for the PGSC to further improve the operation performance of the whole system. Finally, the proposed coordinated control strategy for the DFIG system with SGSC has been validated by the simulation results of a 2-MW-DFIG-based wind turbine with SGSC and experimental results on a laboratory-scale experimental rig under small steady-state grid voltage unbalance.
Keywords :
asynchronous generators; machine vector control; power convertors; power generation control; power grids; reactive power; wind power plants; wind turbines; DFIG-based wind-power generation system; PGSC; SGSC; active power; coordinated control strategy; current reference generation strategy; doubly fed induction generator; electromagnetic torque; enhanced control method; negative-sequence current elimination; parallel grid-side converter; power 2 MW; power pulsations; reactive power; rotor current unbalances; rotor-side converter; series control voltage; series grid-side converter; stator current unbalances; stator voltage; unbalanced grid voltage conditions; vector control strategy; wind turbine; Oscillators; Reactive power; Rotors; Stator windings; Vectors; Voltage control; Doubly fed induction generator (DFIG); enhanced control; grid voltage unbalance; series grid-side converter (SGSC); wind-power generation;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2012.2219884