DocumentCode :
1183676
Title :
A utility interactive wind energy conversion scheme with an asynchronous DC link using a supplementary control loop
Author :
Hilloowala, R.M. ; Sharaf, A.M.
Author_Institution :
Dept. of Electr. Eng., New Brunswick Univ., Fredericton, NB, Canada
Volume :
9
Issue :
3
fYear :
1994
fDate :
9/1/1994 12:00:00 AM
Firstpage :
558
Lastpage :
563
Abstract :
The paper presents modelling, simulation and experimental verification of a utility interactive wind energy conversion scheme with an asynchronous link comprised of a diode bridge rectifier and a line commutated inverter. The control objective is to track and extract maximum power from the wind energy system and transfer this power to the electric utility. This is achieved by controlling the firing delay angle of the inverter. Since the diode bridge rectifier has no control on the DC link voltage, a supplementary control loop is used to limit the voltage within a preset voltage threshold. The proposed scheme for regulating the flow of power through the DC link ensures reduced reactive power burden on the self-excitation capacitor banks and better utilisation of available wind energy, while limiting the DC link voltage within a preset voltage threshold. The simulated results are experimentally verified and found to give good power tracking performance
Keywords :
bridge circuits; commutation; electricity supply industry; invertors; load flow; load regulation; power capacitors; power convertors; power system control; power system interconnection; rectifiers; rectifying circuits; thyristor applications; voltage control; wind power plants; asynchronous DC link; diode bridge rectifier; electric utility; firing delay angle; interconnected power systems; line commutated inverter; load flow control; performance; power tracking; self-excitation capacitor banks; supplementary voltage control loop; wind energy conversion scheme; Bridge circuits; Control systems; Diodes; Inverters; Power industry; Power system modeling; Rectifiers; Threshold voltage; Voltage control; Wind energy;
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/60.326477
Filename :
326477
Link To Document :
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