DocumentCode
1354237
Title
Microgrid Protection Using Communication-Assisted Digital Relays
Author
Sortomme, Eric ; Venkata, S.S. ; Mitra, Joydeep
Author_Institution
Dept. of Electr. Eng., Univ. of Washington, Seattle, WA, USA
Volume
25
Issue
4
fYear
2010
Firstpage
2789
Lastpage
2796
Abstract
Microgrids have been proposed as a way of integrating large numbers of distributed renewable energy sources with distribution systems. One problem with microgrid implementation is designing a proper protection scheme. It has been shown that traditional protection schemes will not work successfully. In this paper a protection scheme using digital relays with a communication network is proposed for the protection of the microgrid system. The increased reliability of adding an additional line to form a loop structure is explored. Also a novel method for modeling high impedance faults is demonstrated to show how the protection scheme can protect against them. This protection scheme is simulated on a realistic distribution system containing a high penetration of inverter connected Distributed Generation (DG) sources operating as a microgrid. In all possible cases of operation the primary and secondary relays performed their intended functions including the detection of high impedance faults. This system is simulated using Matlab Simulink´s SimPowerSystems toolbox to establish the claims made in this paper.
Keywords
distributed power generation; fault diagnosis; invertors; power distribution protection; power distribution reliability; renewable energy sources; Matlab Simulink SimPowerSystems toolbox; communication-assisted digital relays; distributed generation sources; distributed renewable energy sources; distribution reliability; distribution systems; high impedance faults; inverter; microgrid protection; primary relays; secondary relays; Communication networks; Digital relays; Distributed control; Impedance; Inverters; Mathematical model; Protection; Protective relaying; Renewable energy resources; Telecommunication network reliability; Digital relay; distribution communication; distribution systems; high impedance fault; microgrid; protection;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2009.2035810
Filename
5352304
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