DocumentCode :
1513744
Title :
Parallel Operation of DFIGs in Three-Phase Four-Wire Autonomous Wind Energy Conversion System
Author :
Goel, Puneet K. ; Singh, Bhim ; Murthy, S.S. ; Kishore, Navin
Author_Institution :
Rural Electrification Corp., New Delhi, India
Volume :
47
Issue :
4
fYear :
2011
Firstpage :
1872
Lastpage :
1883
Abstract :
This paper deals with a control algorithm for two parallel-operated doubly fed induction generators (DFIGs) driven by wind turbines in a three-phase four-wire autonomous system feeding local loads. The proposed autonomous wind energy conversion system (AWECS) is using back-to-back-connected pulsewidth-modulated insulated-gate-bipolar-transistor-based voltage source converters with a battery energy storage system at their dc link. The system utilizes separate rotor-side converters for each DFIG for maximum power tracking (MPT) through its rotor speed control. However, a common dc bus and a battery bank and stator-side converter are used for voltage and frequency control at the stator terminals of the DFIGs. A delta-star transformer is connected between the stator-side converter and the stator terminals of DFIGs for optimizing the voltage of dc bus, and the load-side neutral is connected to the neutral of the star side of the transformer. The proposed electromechanical system is modeled and simulated in MATLAB using Simulink and Sim Power Systems set toolboxes. The performance of the proposed AWECS is presented to demonstrate its capability of MPT, stator voltage and frequency control, harmonic elimination, load balancing, and load leveling.
Keywords :
PWM power convertors; angular velocity control; asynchronous generators; battery storage plants; frequency control; insulated gate bipolar transistors; maximum power point trackers; optimisation; power generation control; power transformers; rotors; stators; voltage control; wind power plants; wind turbines; AWECS; DFIG; MPT; autonomous wind energy conversion system; battery energy storage system; delta-star transformer; doubly fed induction generators; electromechanical system; frequency control; harmonic elimination; insulated gate bipolar transistor; load balancing; load leveling; maximum power tracking; optimization; parallel operation; pulse width modulation; rotor; speed control; stator; three-phase four-wire autonomous system; voltage control; voltage source converters; wind turbines; Batteries; Converters; Frequency control; Rotors; Stators; Voltage control; Wind turbines; Autonomous wind energy conversion system (AWECS); doubly fed induction generator (DFIG); maximum power tracking (MPT); parallel operation; power quality;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2011.2153170
Filename :
5765676
Link To Document :
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