DocumentCode :
1514031
Title :
Fault locating in ungrounded and high-resistance grounded systems
Author :
Baldwin, Thomas ; Renovich, Frank, Jr. ; Saunders, Lynn F. ; Lubkeman, David
Author_Institution :
FAMU, Florida State Univ., Tallahassee, FL, USA
Volume :
37
Issue :
4
fYear :
2001
Firstpage :
1152
Lastpage :
1159
Abstract :
One of the most common and difficult problems to solve in industrial power systems is the location and elimination of the ground fault. Ground faults that occur in ungrounded and high-resistance grounded systems do not draw enough current to trigger circuit breaker or fuse operation, making them difficult to localize. Techniques currently used to track down faults are time consuming and cumbersome. A new approach developed for ground-fault localization on ungrounded and high-resistance grounded low-voltage systems is described. The system consists of a novel ground-fault relay that operates in conjunction with low-cost fault indicators permanently mounted in the circuit. The ground-fault relay employs digital signal processing techniques to detect the fault, identify the faulted phase, and measure the electrical distance away from the substation. The remote fault indicators are used to visually indicate where the fault is located. The resulting system provides a fast, easy, economical, and safe detection system for ground-fault localization
Keywords :
earthing; fault location; industrial power systems; power system faults; signal processing; digital signal processing; electrical distance measurement; fault detection; fault indicators; fault location; faulted phase identification; ground-fault localization; ground-fault relay; high-resistance grounded systems; industrial power systems; substation; ungrounded systems; Circuit faults; Digital relays; Digital signal processing; Electrical fault detection; Fault diagnosis; Fuses; Industrial power systems; Phase detection; Protective relaying; Trigger circuits;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.936408
Filename :
936408
Link To Document :
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