Fault Line Selection and Section Location of Distribution Network Based on S-Transform and Zero-Sequence Reactive Power
An approach of fault line selection and section location based on S-Transform transient energy integrated with zero-sequence reactive direction is proposed. Fault information of zero-sequence currents collected by each feeder terminal unit (FTU) were uploaded to the main station on the use of real-t...
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Veröffentlicht in: | Applied Mechanics and Materials 2013-10, Vol.442 (Materials Engineering and Mechanical Automation), p.176-182 |
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creator | Yu, Nan Hua Li, Rui Tao, Wei Qing Li, Chuan Jian Cao, Hong Guang |
description | An approach of fault line selection and section location based on S-Transform transient energy integrated with zero-sequence reactive direction is proposed. Fault information of zero-sequence currents collected by each feeder terminal unit (FTU) were uploaded to the main station on the use of real-time communication technologies,and then the main station take analysis for the whole network fault information, using S-transform to obtain the main characteristic frequency of the signal, then compare the transient energy and zero-sequence reactive direction of each feeder line of the frequency to achieve fault line selection. According to the difference of waveform in front and back of the fault point in the fault line,using this above method to realize section location. The simulations and analysis demonstrate the accuracy and reliability of this approach , and its not affected by fault close angle, noise and other factors. |
doi_str_mv | 10.4028/www.scientific.net/AMM.442.176 |
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Fault information of zero-sequence currents collected by each feeder terminal unit (FTU) were uploaded to the main station on the use of real-time communication technologies,and then the main station take analysis for the whole network fault information, using S-transform to obtain the main characteristic frequency of the signal, then compare the transient energy and zero-sequence reactive direction of each feeder line of the frequency to achieve fault line selection. According to the difference of waveform in front and back of the fault point in the fault line,using this above method to realize section location. The simulations and analysis demonstrate the accuracy and reliability of this approach , and its not affected by fault close angle, noise and other factors.</description><identifier>ISSN: 1660-9336</identifier><identifier>ISSN: 1662-7482</identifier><identifier>ISBN: 9783037859018</identifier><identifier>ISBN: 3037859016</identifier><identifier>EISSN: 1662-7482</identifier><identifier>DOI: 10.4028/www.scientific.net/AMM.442.176</identifier><language>eng</language><publisher>Zurich: Trans Tech Publications Ltd</publisher><subject>Faults ; Feeders ; Networks ; Reactive power ; Simulation ; Stations ; Terminals ; Waveforms</subject><ispartof>Applied Mechanics and Materials, 2013-10, Vol.442 (Materials Engineering and Mechanical Automation), p.176-182</ispartof><rights>2014 Trans Tech Publications Ltd</rights><rights>Copyright Trans Tech Publications Ltd. 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Fault information of zero-sequence currents collected by each feeder terminal unit (FTU) were uploaded to the main station on the use of real-time communication technologies,and then the main station take analysis for the whole network fault information, using S-transform to obtain the main characteristic frequency of the signal, then compare the transient energy and zero-sequence reactive direction of each feeder line of the frequency to achieve fault line selection. According to the difference of waveform in front and back of the fault point in the fault line,using this above method to realize section location. The simulations and analysis demonstrate the accuracy and reliability of this approach , and its not affected by fault close angle, noise and other factors.</description><subject>Faults</subject><subject>Feeders</subject><subject>Networks</subject><subject>Reactive power</subject><subject>Simulation</subject><subject>Stations</subject><subject>Terminals</subject><subject>Waveforms</subject><issn>1660-9336</issn><issn>1662-7482</issn><issn>1662-7482</issn><isbn>9783037859018</isbn><isbn>3037859016</isbn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2013</creationdate><recordtype>article</recordtype><sourceid>ABUWG</sourceid><sourceid>AFKRA</sourceid><sourceid>BENPR</sourceid><sourceid>CCPQU</sourceid><sourceid>DWQXO</sourceid><recordid>eNqNkU1v1DAQQC0-JErpf4iEhLgktR3bsS-ItrQUaQuILRculuNMhEvWLrbTiH-Pd7cSVU-cPDMevRnNQ-gNwQ3DVB4vy9Ik68BnNzrbeMjHJ1dXDWO0IZ14gg6IELTumKRP0ZHqZIvbTnKFiXy2-8O1alvxAr1M6QZjwQiTB2i5MPOUq5XzUK1hAptd8JXxQ8n28SpYswvCWH1wKUfXz7v8M-QlxF_VqUkwVKWwrq-j8WkMcbMj_IAY6jX8nsFbqL6BKcA7qL6GBeIr9Hw0U4Kj-_cQfb84vz67rFdfPn46O1nVtqUy17TnA_CBm1EMpBfUYqr4aI21poeOWawkF1ZJRUY7gBSD6MnAiTJA-1Kk7SF6u-fexlAWSVlvXLIwTcZDmJMmXHRYEsq70vr6UetNmKMv22nCmGq7cs4t8N2-y8aQUoRR30a3MfGPJlhvPeniSf_zpIsnXTzp4kkXTwXwfg_I22NlsD8fzPk_xF8LwaNv</recordid><startdate>20131001</startdate><enddate>20131001</enddate><creator>Yu, Nan Hua</creator><creator>Li, Rui</creator><creator>Tao, Wei Qing</creator><creator>Li, Chuan Jian</creator><creator>Cao, Hong Guang</creator><general>Trans Tech Publications Ltd</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7SR</scope><scope>7TB</scope><scope>8BQ</scope><scope>8FD</scope><scope>8FE</scope><scope>8FG</scope><scope>ABJCF</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>BENPR</scope><scope>BFMQW</scope><scope>BGLVJ</scope><scope>CCPQU</scope><scope>D1I</scope><scope>DWQXO</scope><scope>FR3</scope><scope>HCIFZ</scope><scope>JG9</scope><scope>KB.</scope><scope>KR7</scope><scope>L6V</scope><scope>M7S</scope><scope>PDBOC</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope><scope>PTHSS</scope></search><sort><creationdate>20131001</creationdate><title>Fault Line Selection and Section Location of Distribution Network Based on S-Transform and Zero-Sequence Reactive Power</title><author>Yu, Nan Hua ; Li, Rui ; Tao, Wei Qing ; Li, Chuan Jian ; Cao, Hong Guang</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c328t-2b5de5d5af6d1b62c0295fcaccabe74c09856c9891fcde86d6b1d519ae2b89123</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2013</creationdate><topic>Faults</topic><topic>Feeders</topic><topic>Networks</topic><topic>Reactive power</topic><topic>Simulation</topic><topic>Stations</topic><topic>Terminals</topic><topic>Waveforms</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Yu, Nan Hua</creatorcontrib><creatorcontrib>Li, Rui</creatorcontrib><creatorcontrib>Tao, Wei Qing</creatorcontrib><creatorcontrib>Li, Chuan Jian</creatorcontrib><creatorcontrib>Cao, Hong Guang</creatorcontrib><collection>CrossRef</collection><collection>Engineered Materials Abstracts</collection><collection>Mechanical & Transportation Engineering Abstracts</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>ProQuest SciTech Collection</collection><collection>ProQuest Technology Collection</collection><collection>Materials Science & Engineering Collection</collection><collection>ProQuest Central (Alumni Edition)</collection><collection>ProQuest Central UK/Ireland</collection><collection>ProQuest Central</collection><collection>Continental Europe Database</collection><collection>Technology Collection</collection><collection>ProQuest One Community College</collection><collection>ProQuest Materials Science Collection</collection><collection>ProQuest Central Korea</collection><collection>Engineering Research Database</collection><collection>SciTech Premium Collection</collection><collection>Materials Research Database</collection><collection>Materials Science Database</collection><collection>Civil Engineering Abstracts</collection><collection>ProQuest Engineering Collection</collection><collection>Engineering Database</collection><collection>Materials Science Collection</collection><collection>ProQuest One Academic Eastern Edition (DO NOT USE)</collection><collection>ProQuest One Academic</collection><collection>ProQuest One Academic UKI Edition</collection><collection>ProQuest Central China</collection><collection>Engineering Collection</collection><jtitle>Applied Mechanics and Materials</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Yu, Nan Hua</au><au>Li, Rui</au><au>Tao, Wei Qing</au><au>Li, Chuan Jian</au><au>Cao, Hong Guang</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Fault Line Selection and Section Location of Distribution Network Based on S-Transform and Zero-Sequence Reactive Power</atitle><jtitle>Applied Mechanics and Materials</jtitle><date>2013-10-01</date><risdate>2013</risdate><volume>442</volume><issue>Materials Engineering and Mechanical Automation</issue><spage>176</spage><epage>182</epage><pages>176-182</pages><issn>1660-9336</issn><issn>1662-7482</issn><eissn>1662-7482</eissn><isbn>9783037859018</isbn><isbn>3037859016</isbn><abstract>An approach of fault line selection and section location based on S-Transform transient energy integrated with zero-sequence reactive direction is proposed. Fault information of zero-sequence currents collected by each feeder terminal unit (FTU) were uploaded to the main station on the use of real-time communication technologies,and then the main station take analysis for the whole network fault information, using S-transform to obtain the main characteristic frequency of the signal, then compare the transient energy and zero-sequence reactive direction of each feeder line of the frequency to achieve fault line selection. According to the difference of waveform in front and back of the fault point in the fault line,using this above method to realize section location. The simulations and analysis demonstrate the accuracy and reliability of this approach , and its not affected by fault close angle, noise and other factors.</abstract><cop>Zurich</cop><pub>Trans Tech Publications Ltd</pub><doi>10.4028/www.scientific.net/AMM.442.176</doi><tpages>7</tpages></addata></record> |
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subjects | Faults Feeders Networks Reactive power Simulation Stations Terminals Waveforms |
title | Fault Line Selection and Section Location of Distribution Network Based on S-Transform and Zero-Sequence Reactive Power |
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