Title :
Robust stabilization of multimachine power system by DFIG wind turbine equipped with power oscillation damper
Author :
Surinkaew, Tossaporn ; Ngamroo, Issarachai
Author_Institution :
Electr. Eng. Dept., King Mongkut´s Inst. of Technol. Ladkrabang, Bangkok, Thailand
Abstract :
Various system uncertainties and disturbances may cause the power system instability. The power system stabilizing controller designed without taking such uncertainties into account may not tolerate and fail to operate. This paper aim at the new robust control design of power oscillation damper (POD) equipped with the doubly-fed induction generator (DFIG) wind turbine. Without difficulty of mathematic modeling, the inverse output multiplicative perturbation is used to represent system uncertainties. The structure of POD is specified as a practical 2nd-order lead/lag compensator with single input. The POD parameters optimization problem is formulated considering the variation of tie-line power flows. The POD parameters are automatically tuned by firefly algorithm so that the damping performance and robustness can be achieved. Simulation results in IEEE 9 bus test system ensure that the proposed robust POD is superior to the conventional POD in terms of the damping performance and robustness.
Keywords :
asynchronous generators; damping; load flow control; optimisation; perturbation techniques; power generation control; power system stability; robust control; shock absorbers; vibration control; wind turbines; 2nd-order lead-lag compensator; DFIG wind turbine; IEEE 9 bus test system; POD parameters optimization problem; damping performance; damping robustness; doubly-fed induction generator wind turbine; inverse output multiplicative perturbation; power oscillation damper; power system instability; power system stabilizing controller design; robust multimachine power system stabilization; system disturbances; system uncertainties; tie-line power flow variation; Magnetomechanical effects; Robustness; Turbines; doubly-fed induction generator; firefly algorithm; inverse output multiplicative perturbation; power oscillation damper; robust control;
Conference_Titel :
Electrical Engineering Congress (iEECON), 2014 International
Conference_Location :
Chonburi
DOI :
10.1109/iEECON.2014.6925868