DocumentCode :
570409
Title :
A new control system to strengthen the LVRT capacity of DFIG based on both crowbar and DC chopper circuits
Author :
Wang, Maoze ; Xu, Wei ; Hongjie, Jia ; Yu, Xinghuo
Author_Institution :
Key Lab. of Smart Grid of Minist. of Educ., Tianjin Univ., Tianjin, China
fYear :
2012
fDate :
21-24 May 2012
Firstpage :
1
Lastpage :
6
Abstract :
Doubly-fed induction generator (DFIG) is one of important drive systems for wind turbine. It has been widely applied in the power grid today because of its less losses and simpler control strategies. Meanwhile, during voltage dips, the DFIG kept connecting with the grid can provide some reactive power so as to recover the grid voltage, which is called the ability of low voltage ride-through (LVRT). Generally, in the deep voltage sag of grid, a crowbar circuit is set to by-pass the rotor-side converter to protect the whole system. A DC chopper is effective to optimize the responses when the fault occurs. In this paper, the crowbar circuit and a DC chopper circuit are both used to limit the rotor current and DC-link voltage. A control strategy that is used for both of these two circuits is proposed. An index is set to evaluate the effectiveness of the protection. Simulation based on MATLAB/SIMULINK is made to verify theoretical analysis.
Keywords :
asynchronous generators; choppers (circuits); fault diagnosis; induction motor drives; machine control; power convertors; power generation control; power grids; power supply quality; wind turbines; DFIG; LVRT capacity; MATLAB-SIMULINK; control system; crowbar circuit; dc chopper circuits; dc-link voltage; deep voltage sag; doubly-fed induction generator; drive systems; grid voltage; low voltage ride-through; power grid; reactive power; rotor current; rotor-side converter; wind turbine; Choppers (circuits); Circuit faults; Indexes; Integrated circuit modeling; Rotors; Stators; Voltage fluctuations; DC chopper; control scheme; crowbar; doubly-fed induction generator (DFIG); index; low voltage ride-through (LVRT); optimization; ripple; voltage dip; wave form;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Smart Grid Technologies - Asia (ISGT Asia), 2012 IEEE
Conference_Location :
Tianjin
Print_ISBN :
978-1-4673-1221-9
Type :
conf
DOI :
10.1109/ISGT-Asia.2012.6303234
Filename :
6303234
Link To Document :
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