DocumentCode :
1999403
Title :
Integrated fault location system for power distribution feeders
Author :
Gong, Yanfeng ; Guzmán, Armando
Author_Institution :
Schweitzer Eng. Labs. Inc., Pullman, WA, USA
fYear :
2012
fDate :
15-17 April 2012
Abstract :
A fast, accurate fault location solution for power distribution feeders enables utility companies to clear a fault quicker and reduce the outage duration. Traditional impedance-based fault location methods assume that all feeder sections have the same impedance characteristics. This assumption introduces errors on feeders that have branches and line sections with different conductor types and tower configurations. Automated meter reading and trouble call systems provide fault location estimation only for faults that are isolated by field devices. This paper presents a new impedance-based method that estimates all possible fault locations by using a detailed feeder model and fault event reports, complemented with information from other intelligent field devices. Field test results show significant benefits from using the new method over the traditional method. This paper also describes a real-world fault location system that implements the reported method and provides automated fault location estimation within one minute after the fault occurs.
Keywords :
fault location; poles and towers; power distribution faults; automated fault location estimation; automated meter reading; conductor types; detailed feeder model; fault event reports; feeder sections; impedance-based method; integrated fault location system; intelligent field devices; power distribution feeders; tower configurations; trouble call systems; utility companies; Circuit faults; Fault location; Radio frequency; Relays; Resistance; Topology; Distribution Feeder Topology Processing; Fault Location; Power Distribution System; Reactance-Based Method; Smart Grid;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Rural Electric Power Conference (REPC), 2012 IEEE
Conference_Location :
Milwaukee, WI
ISSN :
0734-7464
Print_ISBN :
978-1-4673-0336-1
Type :
conf
DOI :
10.1109/REPCon.2012.6194570
Filename :
6194570
Link To Document :
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