DocumentCode
670604
Title
A Simulink model of an active island detection technique for inverter-based distributed generation
Author
Khan, Faraz ; Massoud, A. ; Gastli, A.
fYear
2013
fDate
17-20 Nov. 2013
Firstpage
315
Lastpage
319
Abstract
With the increased involvement of Distributed Power Generation Systems (DPGSs) into the conventional power system, the structure has evolved and therefore has brought in various challenges albeit improving flexibility and smartness of the system. This paper addresses modeling one of these challenges where a Simulink model for inverter-based distributed generation (IBDG) active islanding detection technique is introduced. Out of the various types of active islanding detection methods, the modeling of the general electric islanding detection method which uses the positive feedback of the voltage or frequency at the point of common coupling (PCC) for the detection of an island is presented. This methodology is modeled and applied for an IBDG connected to a low voltage distribution network. The simulation results are presented for a 20kW, three-phase IBDG showing that the system is able to detect islanding and cease the current flow from the IBDG even under critical operating condition of a close matching between the power delivered by the inverter and the load demand (zero nondetection zone operation).
Keywords
distributed power generation; invertors; power system simulation; Simulink model; active island detection technique; common coupling point; distributed power generation systems; general electric islanding detection; inverter-based distributed generation; positive feedback; power 20 kW; power system; Circuit faults; Distributed power generation; Generators; Inverters; Reactive power; Software packages; Voltage measurement; Active Island Detection; Distributed Generators; Inverter-Based Distributed Generation; Low Voltage Distribution Networks;
fLanguage
English
Publisher
ieee
Conference_Titel
GCC Conference and Exhibition (GCC), 2013 7th IEEE
Conference_Location
Doha
Print_ISBN
978-1-4799-0722-9
Type
conf
DOI
10.1109/IEEEGCC.2013.6705796
Filename
6705796
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