DocumentCode :
2793011
Title :
A novel PRD control method damping resonance in grid-connected three-phase SVPWM current source inverter
Author :
Mao, Meiqin ; Weng, Shiting ; Liu, Fuyan ; Chang, Liuchen ; Ding, Ming ; Wu, Hongbin
Author_Institution :
Res. Center for Photovoltaic Eng. Syst., Hefei Univ. of Technol., Hefei, China
fYear :
2012
fDate :
25-28 June 2012
Firstpage :
487
Lastpage :
491
Abstract :
A novel control method based on the proportional resonant differential (PRD) control is proposed for the grid-connected current source inverter (CSI) used in the direct drive permanent magnet synchronous wind generation system. By the optimal design of the parameters of the PRD controller in two-phase stationary frame, the CSI system can realize zero steady-state error control and effectively damp the resonance caused by its output LC filter just by feeding back the grid-connected current. This not only greatly simplifies the controller design but also enhances the stability of the system. Simulation results show grid-connected CSI with this method has fast dynamic response and good steady-state performances.
Keywords :
PWM invertors; control system synthesis; machine control; permanent magnet generators; power filters; power generation control; power grids; stability; synchronous generators; synchronous motor drives; wind power plants; CSI system; PRD control method damping resonance; controller design; direct drive permanent magnet synchronous wind generation system; fast dynamic response; grid-connected three-phase SVPWM current source inverter; output LC filter; proportional resonant differential control; stability; steady-state performances; two-phase stationary frame; zero steady-state error control; Damping; Frequency control; Gain; Inverters; Power harmonic filters; Resonant frequency; Voltage control; Grid-connected current source inverter; LC resonance; active damping; proportional resonant differential (PRD);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics for Distributed Generation Systems (PEDG), 2012 3rd IEEE International Symposium on
Conference_Location :
Aalborg
Print_ISBN :
978-1-4673-2021-4
Electronic_ISBN :
978-1-4673-2022-1
Type :
conf
DOI :
10.1109/PEDG.2012.6254047
Filename :
6254047
Link To Document :
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