DocumentCode :
3851647
Title :
Local Reactive Power Control Methods for Overvoltage Prevention of Distributed Solar Inverters in Low-Voltage Grids
Author :
Erhan Demirok;Pablo Casado González;Kenn H. B. Frederiksen;Dezso Sera;Pedro Rodriguez;Remus Teodorescu
Author_Institution :
Department of Energy Technology , Aalborg University, Denmark
Volume :
1
Issue :
2
fYear :
2011
Firstpage :
174
Lastpage :
182
Abstract :
The main objective of this study is to increase the penetration level of photovoltaic (PV) power production in low-voltage (LV) grids by means of solar inverters with reactive power control capability. This paper underlines weak points of standard reactive power strategies which are already imposed by certain grid codes, and then, the study introduces a new reactive power control method that is based on sensitivity analysis. The sensitivity analysis shows that the same amount of reactive power becomes more effective for grid voltage support if the solar inverter is located at the end of a feeder. Based on this fundamental knowledge, a location-dependent power factor set value can be assigned to each inverter, and the grid voltage support can be achieved with less total reactive power consumption. In order to prevent unnecessary reactive power absorption from the grid during admissible voltage range or to increase reactive power contribution from the inverters that are closest to the transformer during grid overvoltage condition, the proposed method combines two droop functions that are inherited from the standard cos φ(P) and Q(U) strategies. Its performance comparison in terms of grid losses and voltage variation with different reactive power strategies is provided by modeling and simulating a real suburban LV network.
Keywords :
"Inverters","Reactive power","Voltage control","Reactive power control","Low voltage","Sensitivity analysis","Impedance"
Journal_Title :
IEEE Journal of Photovoltaics
Publisher :
ieee
ISSN :
2156-3381
Type :
jour
DOI :
10.1109/JPHOTOV.2011.2174821
Filename :
6096349
Link To Document :
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