Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind Farms

This article introduces a new time-domain fault location algorithm for two-terminal parallel transmission lines connected to large scale wind farms. The proposed algorithm employs only a half-cycle data window of synchronized current samples at both line terminals to avoid inaccurate estimation of c...

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Main Authors: A. Saber, H. H. Zeineldin, Tarek H. M. El-Fouly, Ahmed Al-Durra
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9316182/
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spelling doaj-640b4a61403043b79d3a7cbd29ef56972021-03-30T15:04:09ZengIEEEIEEE Access2169-35362021-01-019113931140410.1109/ACCESS.2021.30494849316182Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind FarmsA. Saber0https://orcid.org/0000-0001-5147-6402H. H. Zeineldin1https://orcid.org/0000-0003-1500-1260Tarek H. M. El-Fouly2https://orcid.org/0000-0002-3349-417XAhmed Al-Durra3https://orcid.org/0000-0002-6629-5134Department of Electrical Power Engineering, Cairo University, Giza, EgyptDepartment of Electrical Power Engineering, Cairo University, Giza, EgyptDepartment of Electrical Engineering and Computer Science, Advanced Power and Energy Center, Khalifa University, Abu Dhabi, United Arab EmiratesDepartment of Electrical Engineering and Computer Science, Advanced Power and Energy Center, Khalifa University, Abu Dhabi, United Arab EmiratesThis article introduces a new time-domain fault location algorithm for two-terminal parallel transmission lines connected to large scale wind farms. The proposed algorithm employs only a half-cycle data window of synchronized current samples at both line terminals to avoid inaccurate estimation of current phasors due to the generated sub- and inter-harmonics currents by the wind farms. The proposed algorithm does not need any transformation method to decouple the double-circuit transmission line. Moreover, it takes into consideration the effect of the line asymmetry and the potential couplings between the six phases. The fault location equation is deduced by equalizing the differential components of the calculated instantaneous voltages at the fault point, and then the fault distance is estimated directly without any iterative algorithm. The two-terminal parallel transmission line is emulated by PSCAD/EMTDC platform utilizing the frequency-dependent phase model, and the required calculations for fault location are conducted by MATLAB software. The proposed algorithm is tested for several fault resistances and fault locations, and all fault types, including cross-circuit faults. In addition, the effect of measurement, synchronization, and line parameters errors on the fault location accuracy is investigated. The obtained results confirm acceptable accuracy of the proposed fault location algorithm.https://ieeexplore.ieee.org/document/9316182/Domain fault locationdouble-circuit transmission linelarge scale wind farmscurrent samples
collection DOAJ
language English
format Article
sources DOAJ
author A. Saber
H. H. Zeineldin
Tarek H. M. El-Fouly
Ahmed Al-Durra
spellingShingle A. Saber
H. H. Zeineldin
Tarek H. M. El-Fouly
Ahmed Al-Durra
Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind Farms
IEEE Access
Domain fault location
double-circuit transmission line
large scale wind farms
current samples
author_facet A. Saber
H. H. Zeineldin
Tarek H. M. El-Fouly
Ahmed Al-Durra
author_sort A. Saber
title Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind Farms
title_short Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind Farms
title_full Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind Farms
title_fullStr Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind Farms
title_full_unstemmed Time-Domain Fault Location Algorithm for Double-Circuit Transmission Lines Connected to Large Scale Wind Farms
title_sort time-domain fault location algorithm for double-circuit transmission lines connected to large scale wind farms
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description This article introduces a new time-domain fault location algorithm for two-terminal parallel transmission lines connected to large scale wind farms. The proposed algorithm employs only a half-cycle data window of synchronized current samples at both line terminals to avoid inaccurate estimation of current phasors due to the generated sub- and inter-harmonics currents by the wind farms. The proposed algorithm does not need any transformation method to decouple the double-circuit transmission line. Moreover, it takes into consideration the effect of the line asymmetry and the potential couplings between the six phases. The fault location equation is deduced by equalizing the differential components of the calculated instantaneous voltages at the fault point, and then the fault distance is estimated directly without any iterative algorithm. The two-terminal parallel transmission line is emulated by PSCAD/EMTDC platform utilizing the frequency-dependent phase model, and the required calculations for fault location are conducted by MATLAB software. The proposed algorithm is tested for several fault resistances and fault locations, and all fault types, including cross-circuit faults. In addition, the effect of measurement, synchronization, and line parameters errors on the fault location accuracy is investigated. The obtained results confirm acceptable accuracy of the proposed fault location algorithm.
topic Domain fault location
double-circuit transmission line
large scale wind farms
current samples
url https://ieeexplore.ieee.org/document/9316182/
work_keys_str_mv AT asaber timedomainfaultlocationalgorithmfordoublecircuittransmissionlinesconnectedtolargescalewindfarms
AT hhzeineldin timedomainfaultlocationalgorithmfordoublecircuittransmissionlinesconnectedtolargescalewindfarms
AT tarekhmelfouly timedomainfaultlocationalgorithmfordoublecircuittransmissionlinesconnectedtolargescalewindfarms
AT ahmedaldurra timedomainfaultlocationalgorithmfordoublecircuittransmissionlinesconnectedtolargescalewindfarms
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