Title :
PSS control and simulation of asynchronous wind generator connected into power grid
Author :
Zhongwei Tian ; Zhengqiu Wu
Author_Institution :
Coll. of Electr. & Inf. Eng., HuNan Univ., Changsha, China
Abstract :
A power system stabilizing technology is introduced into the wind turbine with the asynchronous induction generator, by bringing the power system stabilizer (PSS) into the pitch control system of asynchronous generator. During the low-frequency power oscilliation of a power system, a damping active power is injected into the network from the asynchronous induction generator via bringing the PSS into the pitch control system of asynchronous generator. Based on the IEEE two-area system, adding a wind farm, the effect of the PSS is verified. Through the power flow calculation, building the corresponding simulation model in MatlabSimulink, the phase-frequency characteristics of the wind turbine at different wind speed is measured, and the oscillation modes existing in the system are analyzed. According to the phase-frequency characteristics, the parameters of PSS are optimized, thus obtaining a generic parameter at the high and low speed. The simulation results show that, the PSS with the settings has good inhibitory actions to low-frequency oscillations under different operation modes.
Keywords :
asynchronous generators; control engineering computing; digital simulation; mathematics computing; power engineering computing; power generation control; power grids; power system stability; wind turbines; IEEE two-area system; Matlab-Simulink; PSS control; PSS simulation; asynchronous induction generator; asynchronous wind generator; damping active power; low-frequency power oscillation; oscillation modes; pitch control system; power flow calculation; power grid; power system stabilizer; power system stabilizing technology; wind farm; wind turbine phase-frequency characteristics; Damping; Generators; Induction motors; Oscillators; Power system stability; Wind speed; Wind turbines; PSS; asynchronous induction generator; parameters optimization; phase-frequency characteristics; wind farm;
Conference_Titel :
Chinese Automation Congress (CAC), 2013
Conference_Location :
Changsha
Print_ISBN :
978-1-4799-0332-0
DOI :
10.1109/CAC.2013.6775826