DocumentCode
1296304
Title
Predicting islanding operation of grid connected PV inverters
Author
Smith, G.A. ; Onions, P.A. ; Infield, D.G.
Author_Institution
Dept. of Electron. & Electr. Eng., Loughborough Univ. of Technol., UK
Volume
147
Issue
1
fYear
2000
fDate
1/1/2000 12:00:00 AM
Firstpage
1
Lastpage
6
Abstract
Increasing numbers of photovoltaic arrays are being connected to the power utility through power electronic inverters. This has raised potential problems of network protection. If, due to the action of the inverter or inverters, the local network voltage and frequency remain within regulatory limits when the utility is disconnected, then islanding is said to occur. Many methods to prevent this have been proposed and a SPICE-based model and analysis of the system are presented. Specifically aimed at predicting the effectiveness of two of these. These are: active frequency drift, which causes the inverter current to be generated slightly lower or higher in frequency than the frequency of the terminal voltage; and slip mode frequency shift, which controls the phase angle of the inverter current as a function of the frequency deviation of the terminal voltage from that of the normal network frequency. Experimental verification of the model is provided. Active frequency drift using frequency speed-up rather than speed-down is shown to be preferable for inductive loads, but conditions that resulted in islanding could be predicted. Slip mode frequency shift proved to be a more robust anti-islanding protection technique
Keywords
DC-AC power convertors; SPICE; invertors; photovoltaic power systems; power system analysis computing; power system interconnection; power system protection; solar cell arrays; SPICE-based model; active frequency drift; anti-islanding protection technique; frequency deviation; grid-connected PV inverters; inductive loads; inverter current; islanding operation prediction; phase angle; photovoltaic arrays; power network protection; slip mode frequency shift;
fLanguage
English
Journal_Title
Electric Power Applications, IEE Proceedings -
Publisher
iet
ISSN
1350-2352
Type
jour
DOI
10.1049/ip-epa:20000004
Filename
820070
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