Current situation and development trend of line selection method for single-phase grounding fault in mine power supply system

The mine power supply system usually adopts the neutral point ungrounded mode or the arc suppression coil grounded mode, due to the particularity and complexity of underground environment, the problem of single-phase grounding fault line selection has not been well solved. This paper analyzes and co...

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Main Authors: Zhanshe YANG, Cheng ZHANG, Xiang RONG
Format: Article
Language:zho
Published: Editorial Office of Safety in Coal Mines 2025-01-01
Series:Meikuang Anquan
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Online Access:https://www.mkaqzz.com/cn/article/doi/10.13347/j.cnki.mkaq.20240292
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author Zhanshe YANG
Cheng ZHANG
Xiang RONG
author_facet Zhanshe YANG
Cheng ZHANG
Xiang RONG
author_sort Zhanshe YANG
collection DOAJ
description The mine power supply system usually adopts the neutral point ungrounded mode or the arc suppression coil grounded mode, due to the particularity and complexity of underground environment, the problem of single-phase grounding fault line selection has not been well solved. This paper analyzes and compares the advantages and disadvantages of the two grounding methods and the difficulty of line selection when single-phase grounding fault occurs in the system. This study introduces the active line selection method, passive line selection method (including the line selection method based on steady state information and the line selection method based on transient information) and the intelligent algorithm fusion line selection when the single phase grounding fault occurs in the mine power supply system. The active line selection method mainly detects the fault line by detecting the injected signal. The passive line selection rule is based on the steady state information and transient information after the fault occurs. Intelligent algorithm fusion line selection can make full use of fault characteristics and has a broad development prospect. In view of the problems such as no disturbance identification, poor reliability of single fault line selection method, obvious advantages of intelligent algorithm fusion line selection but not well applied, the development trend of fault line selection method of mine power supply system is proposed.
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institution Kabale University
issn 1003-496X
language zho
publishDate 2025-01-01
publisher Editorial Office of Safety in Coal Mines
record_format Article
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spelling doaj-art-b3d0d5182dd9472f81b679c2609bd5a72025-01-15T04:32:08ZzhoEditorial Office of Safety in Coal MinesMeikuang Anquan1003-496X2025-01-0156121221910.13347/j.cnki.mkaq.20240292lMKAQ20240292Current situation and development trend of line selection method for single-phase grounding fault in mine power supply systemZhanshe YANG0Cheng ZHANG1Xiang RONG2College of Electrical and Control Engineering, Xi’an University of Science and Technology, Xi’an 710054, ChinaCollege of Electrical and Control Engineering, Xi’an University of Science and Technology, Xi’an 710054, ChinaChina Coal Technology and Engineering Group Changzhou Research Institute, Changzhou 213015, ChinaThe mine power supply system usually adopts the neutral point ungrounded mode or the arc suppression coil grounded mode, due to the particularity and complexity of underground environment, the problem of single-phase grounding fault line selection has not been well solved. This paper analyzes and compares the advantages and disadvantages of the two grounding methods and the difficulty of line selection when single-phase grounding fault occurs in the system. This study introduces the active line selection method, passive line selection method (including the line selection method based on steady state information and the line selection method based on transient information) and the intelligent algorithm fusion line selection when the single phase grounding fault occurs in the mine power supply system. The active line selection method mainly detects the fault line by detecting the injected signal. The passive line selection rule is based on the steady state information and transient information after the fault occurs. Intelligent algorithm fusion line selection can make full use of fault characteristics and has a broad development prospect. In view of the problems such as no disturbance identification, poor reliability of single fault line selection method, obvious advantages of intelligent algorithm fusion line selection but not well applied, the development trend of fault line selection method of mine power supply system is proposed.https://www.mkaqzz.com/cn/article/doi/10.13347/j.cnki.mkaq.20240292mine power supply systemsingle-phase ground faultactive line selection methodpassive line selection methodintelligent algorithm fusion line selection
spellingShingle Zhanshe YANG
Cheng ZHANG
Xiang RONG
Current situation and development trend of line selection method for single-phase grounding fault in mine power supply system
Meikuang Anquan
mine power supply system
single-phase ground fault
active line selection method
passive line selection method
intelligent algorithm fusion line selection
title Current situation and development trend of line selection method for single-phase grounding fault in mine power supply system
title_full Current situation and development trend of line selection method for single-phase grounding fault in mine power supply system
title_fullStr Current situation and development trend of line selection method for single-phase grounding fault in mine power supply system
title_full_unstemmed Current situation and development trend of line selection method for single-phase grounding fault in mine power supply system
title_short Current situation and development trend of line selection method for single-phase grounding fault in mine power supply system
title_sort current situation and development trend of line selection method for single phase grounding fault in mine power supply system
topic mine power supply system
single-phase ground fault
active line selection method
passive line selection method
intelligent algorithm fusion line selection
url https://www.mkaqzz.com/cn/article/doi/10.13347/j.cnki.mkaq.20240292
work_keys_str_mv AT zhansheyang currentsituationanddevelopmenttrendoflineselectionmethodforsinglephasegroundingfaultinminepowersupplysystem
AT chengzhang currentsituationanddevelopmenttrendoflineselectionmethodforsinglephasegroundingfaultinminepowersupplysystem
AT xiangrong currentsituationanddevelopmenttrendoflineselectionmethodforsinglephasegroundingfaultinminepowersupplysystem