Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series Compensator

The nonlinear operation of metal oxide varistor (MOV)-protected series compensator in transmission lines introduces complications into fault detection approaches. The accuracy of a conventional fault detection schemes is adversely affected by continuous change of the system impedance and load curren...

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Main Authors: Mohammed Hussien Hassan Musa, Ling Fu, Zhengyou He, Yumin Lei
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9183761/
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spelling doaj-46537e95329a4e11802b72297f4b7cdb2021-04-23T16:15:06ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202021-01-0191859310.35833/MPCE.2019.0003209183761Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series CompensatorMohammed Hussien Hassan Musa0Ling Fu1Zhengyou He2Yumin Lei3Southwest Jiaotong University,Electrical Engineering Department,Chengdu,ChinaSouthwest Jiaotong University,Electrical Engineering Department,Chengdu,ChinaSouthwest Jiaotong University,Electrical Engineering Department,Chengdu,ChinaSouthwest Jiaotong University,Electrical Engineering Department,Chengdu,ChinaThe nonlinear operation of metal oxide varistor (MOV)-protected series compensator in transmission lines introduces complications into fault detection approaches. The accuracy of a conventional fault detection schemes is adversely affected by continuous change of the system impedance and load current at the point of a series compensation unit. Thus, this study suggests a method for detecting the faulted phase in MOV-protected series-compensated transmission lines. Primarily, the fault feature is identified using the covariance coefficients of the current samples during the fault period and the current samples during the pre-fault period. Furthermore, a convenience fault detection index is established by applying the cumulative sum technique. Extensive validation through different fault circumstances is accomplished, including different fault positions, resistances, and inception times. The experimental results show that the proposed method performs well with high resistance or impedance faults, faults in noisy conditions, and close-in and far-end faults. The proposed method is simple and efficient for faulty phase detection in MOV-protected series-compensated transmission lines.https://ieeexplore.ieee.org/document/9183761/Cumulative approachcovariance coefficienthigh-impedance faultresponse time
collection DOAJ
language English
format Article
sources DOAJ
author Mohammed Hussien Hassan Musa
Ling Fu
Zhengyou He
Yumin Lei
spellingShingle Mohammed Hussien Hassan Musa
Ling Fu
Zhengyou He
Yumin Lei
Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series Compensator
Journal of Modern Power Systems and Clean Energy
Cumulative approach
covariance coefficient
high-impedance fault
response time
author_facet Mohammed Hussien Hassan Musa
Ling Fu
Zhengyou He
Yumin Lei
author_sort Mohammed Hussien Hassan Musa
title Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series Compensator
title_short Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series Compensator
title_full Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series Compensator
title_fullStr Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series Compensator
title_full_unstemmed Faulty Phase Identification for Transmission Line with Metal Oxide Varistor-protected Series Compensator
title_sort faulty phase identification for transmission line with metal oxide varistor-protected series compensator
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5420
publishDate 2021-01-01
description The nonlinear operation of metal oxide varistor (MOV)-protected series compensator in transmission lines introduces complications into fault detection approaches. The accuracy of a conventional fault detection schemes is adversely affected by continuous change of the system impedance and load current at the point of a series compensation unit. Thus, this study suggests a method for detecting the faulted phase in MOV-protected series-compensated transmission lines. Primarily, the fault feature is identified using the covariance coefficients of the current samples during the fault period and the current samples during the pre-fault period. Furthermore, a convenience fault detection index is established by applying the cumulative sum technique. Extensive validation through different fault circumstances is accomplished, including different fault positions, resistances, and inception times. The experimental results show that the proposed method performs well with high resistance or impedance faults, faults in noisy conditions, and close-in and far-end faults. The proposed method is simple and efficient for faulty phase detection in MOV-protected series-compensated transmission lines.
topic Cumulative approach
covariance coefficient
high-impedance fault
response time
url https://ieeexplore.ieee.org/document/9183761/
work_keys_str_mv AT mohammedhussienhassanmusa faultyphaseidentificationfortransmissionlinewithmetaloxidevaristorprotectedseriescompensator
AT lingfu faultyphaseidentificationfortransmissionlinewithmetaloxidevaristorprotectedseriescompensator
AT zhengyouhe faultyphaseidentificationfortransmissionlinewithmetaloxidevaristorprotectedseriescompensator
AT yuminlei faultyphaseidentificationfortransmissionlinewithmetaloxidevaristorprotectedseriescompensator
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