DocumentCode :
2364
Title :
A Fault-Location Algorithm for Series-Compensated Double-Circuit Transmission Lines Using the Distributed Parameter Line Model
Author :
Ning Kang ; Jiaxiong Chen ; Yuan Liao
Author_Institution :
ABB Corp. Res. Center, Raleigh, NC, USA
Volume :
30
Issue :
1
fYear :
2015
fDate :
Feb. 2015
Firstpage :
360
Lastpage :
367
Abstract :
A new fault-location algorithm for series-compensated double-circuit transmission lines utilizing two-terminal unsynchronized voltage and current measurements is presented in this paper. The mutual coupling between the parallel lines in the zero-sequence network is fully considered. The distributed parameter line model is adopted to fully take into account the shunt capacitance of the line. By formulating voltages and currents at the fault point in terms of the unknown fault location, boundary conditions under different fault types are used to derive the fault location. Two subroutines assuming the fault occurs on the left or right side of the series compensator are developed and the principle to identify the correct fault-location estimate is described. Matlab SimPowerSystems is employed to generate cases under diverse fault conditions for validating the proposed fault-ocation algorithm. Evaluation studies have shown that the proposed algorithm has achieved quite accurate results.
Keywords :
distributed parameter networks; fault location; power transmission faults; transmission network calculations; Matlab SimPowerSystems; boundary conditions; current measurements; distributed parameter line model; double circuit transmission lines; fault location algorithm; fault location estimation; mutual coupling; parallel lines; series compensated transmission lines; two terminal unsynchronized voltage; zero sequence network; Circuit faults; Equations; Fault location; Mathematical model; Power transmission lines; Synchronization; Transmission line measurements; Current phasors; double-circuit transmission line; fault location; series compensation; two terminal; voltage phasors;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2014.2337306
Filename :
6867395
Link To Document :
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