DocumentCode :
3295565
Title :
Feasibility study of noise pattern analysis based ground fault locating method for ungrounded DC shipboard power distribution systems
Author :
Pan, Yan ; Steurer, Michael ; Baldwin, Thomas
Author_Institution :
Center for Adv. Power Syst., Florida State Univ., Tallahassee, FL
fYear :
2009
fDate :
20-22 April 2009
Firstpage :
18
Lastpage :
22
Abstract :
A novel fault locating approach based on noise pattern analysis which utilizes the noise caused by the repetitive switching actions of power electronic converters to solve the difficult fault location problem for ungrounded DC shipboard power distribution systems was previously presented. This paper explores the feasibility of the method in terms of noise level when filtering is applied at the input terminal of the DC-DC converter to attenuate the noise. An investigation based on simulation results from a notional, high-fidelity DC zonal electrical distribution system (DCZEDS) model in PSCAD/EMTDC is first conducted. It reveals that the proposed method remains effective even for a DC system in which the noise level is highly limited and, hence, attenuated. The result is then validated through the analysis based on an experimental small scale DC distribution system which includes shielded power cables and DC-DC converters with low switching frequency to capture the high frequency feature of the notional DCZEDS.
Keywords :
DC-DC power convertors; fault location; power cables; power distribution faults; ships; DC-DC converter; ground fault locating method; high-fidelity DC zonal electrical distribution system model; low switching frequency; noise pattern analysis; power electronic converters; repetitive switching actions; shielded power cables; ungrounded DC shipboard power distribution systems; DC-DC power converters; EMTDC; Fault location; Filtering; Noise level; PSCAD; Pattern analysis; Power distribution; Power electronics; Switching converters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electric Ship Technologies Symposium, 2009. ESTS 2009. IEEE
Conference_Location :
Baltimore, MD
Print_ISBN :
978-1-4244-3438-1
Electronic_ISBN :
978-1-4244-3439-8
Type :
conf
DOI :
10.1109/ESTS.2009.4906488
Filename :
4906488
Link To Document :
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