Identification of critical variables in conventional transformers in distribution networks

Transformers are essential equipment to the operation of electrical power systems, a failure causes the lack of electricity supply to end-users, affecting the operating indicators of companies in the distribution sector. The investigation presents an identification of the faults in transformers thro...

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Autores:
Marriaga-Márquez, I. A.
Gómez Sandoval, Kevin Yesid
Grimaldo Guerrero, John William
Nuñez-Álvarez, JR
Tipo de recurso:
Article of journal
Fecha de publicación:
2020
Institución:
Corporación Universidad de la Costa
Repositorio:
REDICUC - Repositorio CUC
Idioma:
eng
OAI Identifier:
oai:repositorio.cuc.edu.co:11323/6548
Acceso en línea:
https://hdl.handle.net/11323/6548
https://repositorio.cuc.edu.co/
Palabra clave:
Distribution networks
Electrical power
Critical variables
Rights
openAccess
License
CC0 1.0 Universal
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dc.title.spa.fl_str_mv Identification of critical variables in conventional transformers in distribution networks
title Identification of critical variables in conventional transformers in distribution networks
spellingShingle Identification of critical variables in conventional transformers in distribution networks
Distribution networks
Electrical power
Critical variables
title_short Identification of critical variables in conventional transformers in distribution networks
title_full Identification of critical variables in conventional transformers in distribution networks
title_fullStr Identification of critical variables in conventional transformers in distribution networks
title_full_unstemmed Identification of critical variables in conventional transformers in distribution networks
title_sort Identification of critical variables in conventional transformers in distribution networks
dc.creator.fl_str_mv Marriaga-Márquez, I. A.
Gómez Sandoval, Kevin Yesid
Grimaldo Guerrero, John William
Nuñez-Álvarez, JR
dc.contributor.author.spa.fl_str_mv Marriaga-Márquez, I. A.
Gómez Sandoval, Kevin Yesid
Grimaldo Guerrero, John William
Nuñez-Álvarez, JR
dc.subject.spa.fl_str_mv Distribution networks
Electrical power
Critical variables
topic Distribution networks
Electrical power
Critical variables
description Transformers are essential equipment to the operation of electrical power systems, a failure causes the lack of electricity supply to end-users, affecting the operating indicators of companies in the distribution sector. The investigation presents an identification of the faults in transformers through a fishbone diagram, an evaluation of the variables that cause the identified failure using the cross-impact matrix method and a proposal to improve the performance. The results will enable a plan to be developed for taking action with monitoring plans to avoid faults that could put the electrical asset at risk and achieve a better performance of the distribution network.
publishDate 2020
dc.date.accessioned.none.fl_str_mv 2020-07-13T19:30:03Z
dc.date.available.none.fl_str_mv 2020-07-13T19:30:03Z
dc.date.issued.none.fl_str_mv 2020
dc.type.spa.fl_str_mv Artículo de revista
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dc.identifier.issn.spa.fl_str_mv 1757-8981
1757-899X
dc.identifier.uri.spa.fl_str_mv https://hdl.handle.net/11323/6548
dc.identifier.doi.spa.fl_str_mv doi:10.1088/1757-899X/844/1/012009
dc.identifier.instname.spa.fl_str_mv Corporación Universidad de la Costa
dc.identifier.reponame.spa.fl_str_mv REDICUC - Repositorio CUC
dc.identifier.repourl.spa.fl_str_mv https://repositorio.cuc.edu.co/
identifier_str_mv 1757-8981
1757-899X
doi:10.1088/1757-899X/844/1/012009
Corporación Universidad de la Costa
REDICUC - Repositorio CUC
url https://hdl.handle.net/11323/6548
https://repositorio.cuc.edu.co/
dc.language.iso.none.fl_str_mv eng
language eng
dc.relation.references.spa.fl_str_mv [1] Bracho CS 2005 Desarrollo de una metodología forense para el diagnóstico de fallas en transformadores monofásicos tipo poste en la red de distribución de 23.9 kV de ENELVEN Universidad Rafael Urdaneta Venezuela.
[2] Canasí Piñeiro M, Martínez Barbado JÁ 2012 Implementation of embedded system DIL/NETPG with Labview for test to transformers Revista Científica de Ingeniería Energética 1 pp 78-86.
[3] Campos FR. 1991, Análisis de las fallas en transformadores causadas por la operación del pararrayos ante sobretensiones externas Ingeniería e investigación 22 pp 34-46.
[4] NTC 2050. 1998, Instituto colombiano de normas técnicas y certificación. ICONTEC.
[5] C57.12.00-1987 IEEE Standard General Requirements for Liquid-Immersed Distribution, Power, and Regulating Transformers.
[6] UPME 2015 Unidad de planeación minero-energética. [Online] [Cited 2019 Feb. Available from: http://www1.upme.gov.co/Energia_electrica/Planes-expansion/Plan-Expansion-2015- 2029/Plan_GT_2015-2029_VF_22-12-2015.pdf.
[7] Urrego, Acosta CA, Rendón RA, Isaza RH 2012, Reubicación óptima de transformadores de distribución para reducción de pérdidas técnicas Scientia et Technica 51 pp 28-34.
[8] Álvarez RE, del Pozo MD 2007 Mantenimiento de transformadores de potencia. Instituto de Investigaciones Tecnológicas para Redes y Equipos Eléctricos (IITREE) XII Encuentro Regional Iberoamericano de CIGRE.
[9] Montoya A, Murcia J 2014 Diagnóstico de fallas en transformadores de distribución monofásicos para la empresa Emcartago Universidad tecnológica de Pereira Colombia.
[10] RYMEL. Catálogo de transformadores. [Online]. [Cited 2019 Mar. Available from: http://www.rymel.com.co/CatalogoProductos.pdf.
[11] IEEE 2009 IEEE Power & Energy Society IEEE Std C62.22 pp 64.
[12] Griffel D, Leitloff V, Harmand Y, Bergeal J 1997 A new deal for safety and quality on MV networks IEEE Transactions on Power Delivery 4 pp 1428–1433.
[13] Jaimes JE, Ochoa JA, Camacho EA 2016 Análisis de criticidad y árboles de diagnóstico de fallas para transformadores de potencia Revista Colombiana De Tecnologias De Avanzada (Rcta) 27.
[14] Araya G, Gómez GA 2016 Comportamiento de los aislamientos sólidos de transformadores de potencia en condiciones ambientales no controladas Revista Tecnología En Marcha 3 pp 99-116.
[15] Mago MG, Vallés L, Olaya JJ 2011 Análisis de fallas en transformadores de distribución utilizando ensayos no destructivos y pruebas de tensión mecánicas Revista Ingeniería UC 2 pp 15-26.
[16] Janer D, Areu O 2002 Un análisis sobre las fallas de transformadores de distribución en cuba Revista Científica Ingeniería Energética 2 pp 10-15.
[17] Zapata C, Villegas S, Arango F. 2006, Reglas de consistencia entre modelos de requisitos de UN-Metodo. Rev Univ Eafit Revista Universidad EAFIT 141 pp 40-59.
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dc.publisher.spa.fl_str_mv IOP Conference Series: Materials Science and Engineering
institution Corporación Universidad de la Costa
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spelling Marriaga-Márquez, I. A.73ed3f70f9bc0a6d89ccb32045171e52300Gómez Sandoval, Kevin Yesid5ceab7367a1b5025a6a92ee107dff5cc300Grimaldo Guerrero, John William4554b13a3632a3d9cb61becc3dd94e2dNuñez-Álvarez, JR27ddb7c48c854b1ad8d120d981781a523002020-07-13T19:30:03Z2020-07-13T19:30:03Z20201757-89811757-899Xhttps://hdl.handle.net/11323/6548doi:10.1088/1757-899X/844/1/012009Corporación Universidad de la CostaREDICUC - Repositorio CUChttps://repositorio.cuc.edu.co/Transformers are essential equipment to the operation of electrical power systems, a failure causes the lack of electricity supply to end-users, affecting the operating indicators of companies in the distribution sector. The investigation presents an identification of the faults in transformers through a fishbone diagram, an evaluation of the variables that cause the identified failure using the cross-impact matrix method and a proposal to improve the performance. The results will enable a plan to be developed for taking action with monitoring plans to avoid faults that could put the electrical asset at risk and achieve a better performance of the distribution network.engIOP Conference Series: Materials Science and EngineeringCC0 1.0 Universalhttp://creativecommons.org/publicdomain/zero/1.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2Distribution networksElectrical powerCritical variablesIdentification of critical variables in conventional transformers in distribution networksArtículo de revistahttp://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_2df8fbb1Textinfo:eu-repo/semantics/articlehttp://purl.org/redcol/resource_type/ARTinfo:eu-repo/semantics/acceptedVersion[1] Bracho CS 2005 Desarrollo de una metodología forense para el diagnóstico de fallas en transformadores monofásicos tipo poste en la red de distribución de 23.9 kV de ENELVEN Universidad Rafael Urdaneta Venezuela.[2] Canasí Piñeiro M, Martínez Barbado JÁ 2012 Implementation of embedded system DIL/NETPG with Labview for test to transformers Revista Científica de Ingeniería Energética 1 pp 78-86.[3] Campos FR. 1991, Análisis de las fallas en transformadores causadas por la operación del pararrayos ante sobretensiones externas Ingeniería e investigación 22 pp 34-46.[4] NTC 2050. 1998, Instituto colombiano de normas técnicas y certificación. ICONTEC.[5] C57.12.00-1987 IEEE Standard General Requirements for Liquid-Immersed Distribution, Power, and Regulating Transformers.[6] UPME 2015 Unidad de planeación minero-energética. [Online] [Cited 2019 Feb. Available from: http://www1.upme.gov.co/Energia_electrica/Planes-expansion/Plan-Expansion-2015- 2029/Plan_GT_2015-2029_VF_22-12-2015.pdf.[7] Urrego, Acosta CA, Rendón RA, Isaza RH 2012, Reubicación óptima de transformadores de distribución para reducción de pérdidas técnicas Scientia et Technica 51 pp 28-34.[8] Álvarez RE, del Pozo MD 2007 Mantenimiento de transformadores de potencia. Instituto de Investigaciones Tecnológicas para Redes y Equipos Eléctricos (IITREE) XII Encuentro Regional Iberoamericano de CIGRE.[9] Montoya A, Murcia J 2014 Diagnóstico de fallas en transformadores de distribución monofásicos para la empresa Emcartago Universidad tecnológica de Pereira Colombia.[10] RYMEL. Catálogo de transformadores. [Online]. [Cited 2019 Mar. Available from: http://www.rymel.com.co/CatalogoProductos.pdf.[11] IEEE 2009 IEEE Power & Energy Society IEEE Std C62.22 pp 64.[12] Griffel D, Leitloff V, Harmand Y, Bergeal J 1997 A new deal for safety and quality on MV networks IEEE Transactions on Power Delivery 4 pp 1428–1433.[13] Jaimes JE, Ochoa JA, Camacho EA 2016 Análisis de criticidad y árboles de diagnóstico de fallas para transformadores de potencia Revista Colombiana De Tecnologias De Avanzada (Rcta) 27.[14] Araya G, Gómez GA 2016 Comportamiento de los aislamientos sólidos de transformadores de potencia en condiciones ambientales no controladas Revista Tecnología En Marcha 3 pp 99-116.[15] Mago MG, Vallés L, Olaya JJ 2011 Análisis de fallas en transformadores de distribución utilizando ensayos no destructivos y pruebas de tensión mecánicas Revista Ingeniería UC 2 pp 15-26.[16] Janer D, Areu O 2002 Un análisis sobre las fallas de transformadores de distribución en cuba Revista Científica Ingeniería Energética 2 pp 10-15.[17] Zapata C, Villegas S, Arango F. 2006, Reglas de consistencia entre modelos de requisitos de UN-Metodo. 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