DocumentCode :
2278641
Title :
An accurate power control strategy for inverter based distributed generation units operating in a low voltage microgrid
Author :
Li, Yun Wei ; Kao, ChingNan
Author_Institution :
Dept. Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB, Canada
fYear :
2009
fDate :
20-24 Sept. 2009
Firstpage :
3363
Lastpage :
3370
Abstract :
In this paper, a power control strategy is proposed for a low voltage microgrid, where the mainly resistive line impedance, the unequal impedance among DG units and the microgrid load locations make the conventional frequency and voltage droop method unpractical. The proposed power control strategy contains a virtual inductor at the interfacing inverter output and an accurate power control and sharing algorithm with consideration of both impedance voltage drop effect and DG local load effect. Specifically, the virtual inductance can effectively prevent the coupling between the real and reactive power by introducing a mainly inductive impedance. On the other hand, based on the inductive impedance, the proposed accurate reactive power sharing algorithm functions by estimating the impedance voltage drops and significantly improves the reactive power control and sharing accuracy. Finally, considering the different locations of loads in a microgrid, the reactive power control accuracy is further improved by employing an on-line estimated reactive power offset to compensate DG local load effects. The proposed power control strategy has been tested experimentally on a low voltage microgrid prototype.
Keywords :
distributed power generation; invertors; power control; power generation control; power inductors; reactive power control; DG local load effect compensation; impedance voltage drop effect; inverter based distributed generation units; low voltage microgrid; microgrid load location; on-line estimated reactive power offset; power control strategy; reactive power control; reactive power sharing algorithm; resistive line impedance; virtual inductor; Distributed generation (DG); inverter interface; microgrid; power control; renewable energy resource (RES);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition, 2009. ECCE 2009. IEEE
Conference_Location :
San Jose, CA
Print_ISBN :
978-1-4244-2893-9
Electronic_ISBN :
978-1-4244-2893-9
Type :
conf
DOI :
10.1109/ECCE.2009.5316306
Filename :
5316306
Link To Document :
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