IEEE Transactions on Power Delivery, ( ISI ), Volume (28), No (4), Year (2013-10) , Pages (2483-2490)

Title : ( A Novel Fault-Location Method for HVDC Transmission Lines Based on Similarity Measure of Voltage Signals )

Authors: Mohammad Farshad , Javad Sadeh ,

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Abstract

In this paper, a method for fault locating in HVDC transmission lines is proposed which only uses the voltage signal measured at one of the line terminals. The post-fault voltage signal, in a relatively short time window, is considered and the corresponding fault location is estimated based on the similarity of the captured voltage signal to existing patterns. In this approach, the Pearson correlation coefficient is used to measure the similarity. Despite simplicity and low complexity of the proposed fault-location method, it does not suffer from the technical problems which are associated with the traveling-wave-based methods, such as the difficulty of identifying traveling wavefronts or the strong dependency of accuracy on the sampling frequency. Numerous training and test patterns are obtained by simulating various fault types in a long overhead HVDC transmission line under different fault location, fault resistance and pre-fault current values. The accuracy of the proposed fault-location method is verified using these patterns.

Keywords

, HVDC system, pattern recognition, similarity measure, single-end fault-location method
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@article{paperid:1035183,
author = {Farshad, Mohammad and Sadeh, Javad},
title = {A Novel Fault-Location Method for HVDC Transmission Lines Based on Similarity Measure of Voltage Signals},
journal = {IEEE Transactions on Power Delivery},
year = {2013},
volume = {28},
number = {4},
month = {October},
issn = {0885-8977},
pages = {2483--2490},
numpages = {7},
keywords = {HVDC system; pattern recognition; similarity measure; single-end fault-location method},
}

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%0 Journal Article
%T A Novel Fault-Location Method for HVDC Transmission Lines Based on Similarity Measure of Voltage Signals
%A Farshad, Mohammad
%A Sadeh, Javad
%J IEEE Transactions on Power Delivery
%@ 0885-8977
%D 2013

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