Protection of transmission lines sharing the same right-of-way

The compact transmission configurations such as the double-circuit and multi-phase systems have emerged as a result of the search for compact and efficient systems with minimal environmental hazards. Protective relaying techniques are therefore, required to also evolve to provide adequate protection...

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Main Author: Fernando, Ioni T.
Format: Others
Language:en
en_US
Published: 2007
Online Access:http://hdl.handle.net/1993/844
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.anitoba.ca-dspace#1993-8442013-01-11T13:31:13ZFernando, Ioni T.2007-05-15T15:18:55Z2007-05-15T15:18:55Z1997-05-01T00:00:00Zhttp://hdl.handle.net/1993/844The compact transmission configurations such as the double-circuit and multi-phase systems have emerged as a result of the search for compact and efficient systems with minimal environmental hazards. Protective relaying techniques are therefore, required to also evolve to provide adequate protection to such systems. The latest well established numerical techniques have made protective relays very flexible, adaptable and cost effective. They also offer increased functionality in various applications. This thesis project proceeds to investigate the possible enhancements to a numerical distance relaying algorithm for application on double-circuit and six-phase transmission systems. Successful modifications and additions to the single ended relaying technique are recommended. The recommendations are also supported by the off-line simulation test results carried out on the EMTDC Electromagnetic Transient Simulation Program. Finally, a neural network trained to identify the faulted phases is integrated to the distance algorithm in order to further improve the protection scheme on the double-circuit transmission line configuration.10965835 bytes184 bytesapplication/pdftext/plainenen_USProtection of transmission lines sharing the same right-of-wayElectrical and Computer EngineeringPh.D.
collection NDLTD
language en
en_US
format Others
sources NDLTD
description The compact transmission configurations such as the double-circuit and multi-phase systems have emerged as a result of the search for compact and efficient systems with minimal environmental hazards. Protective relaying techniques are therefore, required to also evolve to provide adequate protection to such systems. The latest well established numerical techniques have made protective relays very flexible, adaptable and cost effective. They also offer increased functionality in various applications. This thesis project proceeds to investigate the possible enhancements to a numerical distance relaying algorithm for application on double-circuit and six-phase transmission systems. Successful modifications and additions to the single ended relaying technique are recommended. The recommendations are also supported by the off-line simulation test results carried out on the EMTDC Electromagnetic Transient Simulation Program. Finally, a neural network trained to identify the faulted phases is integrated to the distance algorithm in order to further improve the protection scheme on the double-circuit transmission line configuration.
author Fernando, Ioni T.
spellingShingle Fernando, Ioni T.
Protection of transmission lines sharing the same right-of-way
author_facet Fernando, Ioni T.
author_sort Fernando, Ioni T.
title Protection of transmission lines sharing the same right-of-way
title_short Protection of transmission lines sharing the same right-of-way
title_full Protection of transmission lines sharing the same right-of-way
title_fullStr Protection of transmission lines sharing the same right-of-way
title_full_unstemmed Protection of transmission lines sharing the same right-of-way
title_sort protection of transmission lines sharing the same right-of-way
publishDate 2007
url http://hdl.handle.net/1993/844
work_keys_str_mv AT fernandoionit protectionoftransmissionlinessharingthesamerightofway
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