Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of China

Because the causes of transmission line faults are not known clearly at present, this paper proposes fault classification for transmission lines, and analyses the characteristics of different faults. Using the transmission line faults data of southern coastal provincial power grid from 2007 to 2018,...

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Main Author: Binghuang Chen
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Open Access Journal of Power and Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9006796/
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spelling doaj-aea4e9935ce44b1db8b6b869ca387bfd2021-04-05T17:40:26ZengIEEEIEEE Open Access Journal of Power and Energy2687-79102020-01-01712212910.1109/OAJPE.2020.29756659006796Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of ChinaBinghuang Chen0https://orcid.org/0000-0001-9104-6677School of Information Science and Engineering, Fujian University of Technology, Fuzhou, ChinaBecause the causes of transmission line faults are not known clearly at present, this paper proposes fault classification for transmission lines, and analyses the characteristics of different faults. Using the transmission line faults data of southern coastal provincial power grid from 2007 to 2018, this paper analyses the influence and distribution of transmission line faults affected by lightning, typhoon, wildfire, foreign object and external damage. These five faults are the main factors affecting the safe and stable operation of transmission lines in this region. According to the different fault classification and statistical rules, the design standards for important transmission lines should be improved. Considering the factors of micro-topography, micro-meteorology and engineering cost, the inspection and maintenance of existing lines should be strengthened. The statistics and analysis will be helpful to the research, development and application of new theories, new technologies and new equipment in disaster prevention and reduction from the aspects of disaster prediction and monitoring.https://ieeexplore.ieee.org/document/9006796/Transmission linestrip outlightningtyphoonwildfireforeign object
collection DOAJ
language English
format Article
sources DOAJ
author Binghuang Chen
spellingShingle Binghuang Chen
Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of China
IEEE Open Access Journal of Power and Energy
Transmission lines
trip out
lightning
typhoon
wildfire
foreign object
author_facet Binghuang Chen
author_sort Binghuang Chen
title Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of China
title_short Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of China
title_full Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of China
title_fullStr Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of China
title_full_unstemmed Fault Statistics and Analysis of 220-kV and Above Transmission Lines in a Southern Coastal Provincial Power Grid of China
title_sort fault statistics and analysis of 220-kv and above transmission lines in a southern coastal provincial power grid of china
publisher IEEE
series IEEE Open Access Journal of Power and Energy
issn 2687-7910
publishDate 2020-01-01
description Because the causes of transmission line faults are not known clearly at present, this paper proposes fault classification for transmission lines, and analyses the characteristics of different faults. Using the transmission line faults data of southern coastal provincial power grid from 2007 to 2018, this paper analyses the influence and distribution of transmission line faults affected by lightning, typhoon, wildfire, foreign object and external damage. These five faults are the main factors affecting the safe and stable operation of transmission lines in this region. According to the different fault classification and statistical rules, the design standards for important transmission lines should be improved. Considering the factors of micro-topography, micro-meteorology and engineering cost, the inspection and maintenance of existing lines should be strengthened. The statistics and analysis will be helpful to the research, development and application of new theories, new technologies and new equipment in disaster prevention and reduction from the aspects of disaster prediction and monitoring.
topic Transmission lines
trip out
lightning
typhoon
wildfire
foreign object
url https://ieeexplore.ieee.org/document/9006796/
work_keys_str_mv AT binghuangchen faultstatisticsandanalysisof220kvandabovetransmissionlinesinasoutherncoastalprovincialpowergridofchina
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