Title :
Improvement on the grid connected control strategy of direct drive permanent magnet wind power system
Author :
Wu Lijuan ; Wu Haotian ; Li Xuesong
Author_Institution :
Acad. of Electron. & Inf. Eng., Univ. of Sci. & Technol. Liaoning, Anshan, China
fDate :
May 31 2014-June 2 2014
Abstract :
In recent years, variable speed permanent frequency generation, as the main part of wind power generation, has been widely concerned by people. In this paper, choose direct-drive permanent magnet wind power system as the study system, based on the mathematical model of three-phase voltage type PWM inverter on the system grid, then make some improvements on the double-closed loop control strategy, in which grid voltage oriented is used commonly. In the outer voltage loop control, the parameters of PI regulator have been increased online using Fuzzy PI control, reduce the system overshoot time and improve the stability of the system. In the inner current loop control, turn the PI control of d/q rotating coordinate system into the PR control of two-phase static coordinate system, reduce the harmonic of the output and improve the robustness of the system. The simulation of the three phase voltage-source PWM rectifier model is carried out with the software MTALAB and the simulation results verify that this design method is feasible and the simulation model is correct.
Keywords :
PI control; control engineering computing; fuzzy control; invertors; power engineering computing; power generation control; voltage control; wind power plants; Matlab software; PI regulator; direct drive permanent magnet wind power system; double-closed loop control strategy; fuzzy PI control; grid connected control strategy; outer voltage loop control; proportional-integral regulator; three phase voltage-source PWM rectifier model; three-phase voltage type PWM inverter; two-phase static coordinate system; variable speed permanent frequency generation; wind power generation; Inverters; Niobium; Permanent magnets; Pi control; Resonant frequency; Voltage control; Wind power generation; Direct-drive permanent magnet generation system; Double-closed loop control; Fuzzy PI control; PR control; grid voltage oriented;
Conference_Titel :
Control and Decision Conference (2014 CCDC), The 26th Chinese
Conference_Location :
Changsha
Print_ISBN :
978-1-4799-3707-3
DOI :
10.1109/CCDC.2014.6853029