Title :
Feedforward Transient Compensation Control for DFIG Wind Turbines During Both Balanced and Unbalanced Grid Disturbances
Author :
Jiaqi Liang ; Howard, Dustin F. ; Restrepo, J.A. ; Harley, Ronald G.
Author_Institution :
ABB U.S. Corp. Res. Center, Raleigh, NC, USA
Abstract :
A feedforward transient compensation (FFTC) control scheme with proportional-integral-resonant current regulators is proposed to enhance the low-voltage ride through (LVRT) capability of doubly fed induction generators (DFIGs) during both balanced and unbalanced grid faults. Compensation for the DFIG stator transient voltage is feedforward injected into both the inner current control loop and the outer power control loop. The FFTC current controller improves the transient rotor-current control capability and minimizes the DFIG control interruptions during both balanced and unbalanced grid faults. Without the need of sequence-component decomposition, the torque ripple is reduced by injecting 60- and 120-Hz rotor-current components during unbalanced stator voltage conditions. The proposed FFTC control introduces minimal additional complexity to a regular DFIG vector-control scheme and shows promising enhancements in the LVRT capability of DFIGs. Simulation and experimental results are presented to demonstrate the effectiveness of the proposed FFTC control scheme.
Keywords :
power system transients; wind turbines; DFIG; balanced and unbalanced grid disturbances; feedforward transient compensation control; inner current control loop; low-voltage ride through; outer power control loop; proportional-integral-resonant current regulators; wind turbines; Current control; Regulators; Rotors; Stators; Steady-state; Torque; Transient analysis; Doubly fed induction generator (DFIG); feedforward transient compensation (FFTC); low-voltage ride through (LVRT); wind turbines;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2013.2253439