Title :
Control of PMSG-Based Wind Turbines for System Inertial Response and Power Oscillation Damping
Author :
Yi Wang ; Jianhui Meng ; Xiangyu Zhang ; Lie Xu
Author_Institution :
State Key Lab. of Alternate Electr. Power Syst. with Renewable Energy Sources, North China Electr. Power Univ., Beijing, China
Abstract :
This paper investigates an improved active power control method for variable speed wind turbine to enhance the inertial response and damping capability during transient events. The optimized power point tracking (OPPT) controller, which shifts the turbine operating point from the maximum power point tracking (MPPT) curve to the virtual inertia control (VIC) curves according to the frequency deviation, is proposed to release the “hidden” kinetic energy and provide dynamic frequency support to the grid. The effects of the VIC on power oscillation damping capability are theoretically evaluated. Compared to the conventional supplementary derivative regulator-based inertia control, the proposed control scheme can not only provide fast inertial response, but also increase the system damping capability during transient events. Thus, inertial response and power oscillation damping function can be obtained in a single controller by the proposed OPPT control. A prototype three-machine system containing two synchronous generators and a PMSG-based wind turbine with 31% of wind penetration is tested to validate the proposed control strategy on providing rapid inertial response and enhanced system damping.
Keywords :
damping; electromagnetic oscillations; maximum power point trackers; optimal control; permanent magnet generators; power control; power grids; power system transients; synchronous generators; virtualisation; wind turbines; MPPT curve; OPPT controller; PMSG-based wind turbines; VIC curves; active power control method; control scheme; frequency deviation; kinetic energy; maximum power point tracking curve; optimized power point tracking controller; permanent magnet synchronous generators; power oscillation damping capability; power oscillation damping function; supplementary derivative regulator; system damping capability; system inertial response; transient events; variable speed wind turbine; virtual inertia control curves; wind penetration; Damping; Frequency control; Kinetic energy; Maximum power point trackers; Oscillators; Rotors; Wind turbines; Frequency support; permanent magnet synchronous generator (PMSG); power oscillation damping; variable speed wind turbine; virtual inertia control (VIC);
Journal_Title :
Sustainable Energy, IEEE Transactions on
DOI :
10.1109/TSTE.2015.2394363