Respuesta de un esquema de protección en distribución incluyendo generación distribuida

dc.contributor.advisorPavas Martínez, Fabio Andrésspa
dc.contributor.authorValbuena Godoy, Julián Davidspa
dc.contributor.researchgroupPROGRAMA DE INVESTIGACION SOBRE ADQUISICION Y ANALISIS DE SEÑALES PAAS-UNspa
dc.date.accessioned2020-06-18T15:54:41Zspa
dc.date.available2020-06-18T15:54:41Zspa
dc.date.issued2020-05-13spa
dc.description.abstractThis document analyzes the response of a protection scheme, in a conventional distribution network, produced for some distributed generation scenarios. This response depends on the fault location and scenario penetration and dispersion levels. It is measured through two methods: operations discrimination and reliability indicators affectation. Analyzing the scheme response, few strategies are proposed to mitigate the affectation starting with configuration modifications, changes of some protection devices, and implementation of an adaptive scheme with communication between devices. Finally, the assessment methods indicate that, according to the scheme configuration, there are parts of the network that are more susceptible to having effects on distributed generation. To correct these affectations, effectiveness of mitigation strategies is also assessed, concluding that for certain generation scenarios it is not possible to solve the problem with conventional protections.spa
dc.description.abstractEn este documento se analiza la respuesta de un esquema de protección, presente en una red de distribución convencional, ante diferentes escenarios de generación distribuida. Dicha respuesta depende de la localización de la falla y del nivel de penetración y de dispersión del escenario de generación; además de ser medida a través de dos métodos: Uno por discriminación de operaciones y otro por indicadores de confiabilidad. Analizando la respuesta del esquema, se proponen estrategias para mitigar su afectación iniciando por la modificación de ajustes, cambio de los dispositivos de protección y, al terminar, adopción de un esquema adaptativo con comunicación entre los dispositivos que la componen. Finalmente, los métodos de valoración indican que, según la configuración del esquema, hay partes de la red más susceptibles a tener afectaciones ante la generación distribuida. Para corregir dichas afectaciones, también se valora la efectividad de las estrategias de mitigación, dando como resultado que para ciertos escenarios de generación no es posible resolver el problema con protecciones convencionales.spa
dc.description.degreelevelMaestríaspa
dc.format.extent137spa
dc.format.mimetypeapplication/pdfspa
dc.identifier.citationJ. D. Valbuena, "Respuesta de un esquema de protección en distribución incluyendo generación distribuida", Universidad Nacional de Colombia, Bogotá, Colombia, 2020spa
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/77671
dc.language.isospaspa
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotáspa
dc.publisher.programBogotá - Ingeniería - Doctorado en Ingeniería - Ingeniería Eléctricaspa
dc.relation.referencesB. J. Brearley y R. R. Prabu, "A review on issues and approaches for microgrid protection", Renewable and Sustainable Energy Reviews, vol. 67, pags. 988-997, 2017.spa
dc.relation.referencesS. Chowdhury y P. Crossley, Microgrids and active distribution networks. The Institution of Engineering y Technology, 2009.spa
dc.relation.referencesR. H. Lasseter, "Microgrids", en Power Engineering Society Winter Meeting, 2002. IEEE, IEEE, vol. 1, 2002, pags. 305-308.spa
dc.relation.referencesX. Xu, J. Mitra, T. Wang y L. Mu, "An evaluation strategy for microgrid reliability considering the effects of protection system", IEEE Transactions on Power Delivery, vol. 31, n.o 5, pags. 1989-1997, 2016.spa
dc.relation.referencesS. A. Gopalan, V. Sreeram y H. H. C. Iu, "A review of coordination strategies and protection schemes for microgrids", Renewable and Sustainable Energy Reviews, vol. 32, pags. 222-228, 2014.spa
dc.relation.referencesF. Mumtaz e I. S. Bayram, "Planning, Operation, and Protection of Microgrids: An Overview", Energy Procedia, vol. 107, pags. 94-100, 2017.spa
dc.relation.referencesG. A. Quiroga, C. F. M. Almeida, H. Kagan y N. Kagan, "Protection System Considerations in Networks with Distributed Generation", en Electric Distribution Network Management and Control, Springer, 2018, pags. 255-280.spa
dc.relation.referencesW. E. Feero, D. C. Dawson y J. Stevens, "White paper on protection issues of the microgrid concept", Consortium for Electric Reliability Technology Solutions, 2002.spa
dc.relation.referencesT. S. Basso y R. DeBlasio, "IEEE 1547 series of standards: interconnection issues", IEEE Transactions on Power Electronics, vol. 19, n.o 5, pags. 1159-1162, 2004.spa
dc.relation.referencesX. Xu, T. Wang, L. Mu y J. Mitra, "Predictive Analysis of Microgrid Reliability Using a Probabilistic Model of Protection System Operation", IEEE Transactions on Power Systems, vol. 32, n.o 4, pags. 3176-3184, 2017.spa
dc.relation.referencesD. Turcotte y F. Katiraei, "Fault contribution of grid-connected inverters", en Elec- trical Power & Energy Conference (EPEC), 2009 IEEE, IEEE, 2009, pags. 1-5.spa
dc.relation.referencesJ. T. Tengdin, "The 2008 revision of IEEE C37. 2 Standard for Electrical Power System Device Function Numbers, Acronyms, and Contact Designations", en Conference Re- cord 2009 IEEE Industrial & Commercial Power Systems Technical Conference, IEEE, 2009, pags. 1-7.spa
dc.relation.referencesE. Sorrentino y N. Gupta, "Summary of useful concepts about the coordination of directional overcurrent protections", CSEE Journal of Power and Energy Systems, vol. 5, no 3, pags. 382-390, 2019. doi: 10.17775/CSEEJPES.2018.01220.spa
dc.relation.referencesJ. L. Blackburn y T. J. Domin, Protective relaying: Principles and applications, third edition. CRC press, 2006, pags. 1-635, isbn: 9781420017847.spa
dc.relation.referencesS. Ramirez Castaño, Proteccon de sistemas electricos, Primera ed. Manizales, Colombia: Universidad Nacional de Colombia - Sede Manizales, 2003, pag. 664.spa
dc.relation.referencesH. J. Altuve, K. Zimmerman y D. Tziouvaras, "Maximizing line protection reliability, speed, and sensitivity", en 2016 69th Annual Conference for Protective Relay Engineers (CPRE), 2016, pags. 1-28. doi: 10.1109/CPRE.2016.7914896.spa
dc.relation.referencesW. A. Elmore, Protective relaying: theory and applications. CRC press, 2003, vol. 1.spa
dc.relation.referencesR. Capella, "Protecciones electricas en MT", Schneider Technical Guide PT-71, 2003.spa
dc.relation.referencesC. J. Zapata, "Proteccion de Sistemas de Transmision y Distribucion de Electricidad", Universidad Tecnologica de Pereira, Pereira, Colombia, 2010.spa
dc.relation.references"IEEE Standard Design Tests for High-Voltage (>1000 V) Fuses and Accessories", IEEE Std C37.41-2016 (Revision of IEEE Std C37.41-2008), pags. 1-141, 2016, doi: 10.1109/IEEESTD.2016.7781575.spa
dc.relation.references"IEEE Standard Speci cations for High-Voltage (>1000 V) Fuses and Accessories", IEEE Std C37.42-2016, pags. 1-117, mayo de 2017.spa
dc.relation.references"Standard requeriments for instruments transformers", ANSI/IEEE standard C57.12.00, pags. 1-110, feb. de 2015. doi: 10.1109/IEEESTD.2012.6209381.spa
dc.relation.referencesW. H. Kersting, "Radial distribution test feeders", en 2001 IEEE Power Engineering Society Winter Meeting. Conference Proceedings (Cat. No.01CH37194), vol. 2, 2001, pags. 908-912. doi: 10.1109/PESW.2001.916993.spa
dc.relation.referencesA. Girgis y S. Brahma, "Effect of distributed generation on protective device coordination in distribution system", en LESCOPE 01. 2001 Large Engineering Systems Conference on Power Engineering. Conference Proceedings. Theme: Powering Beyond 2001 (Cat. No.01ex490), 2001, pags. 115-119. doi: 10.1109/LESCPE.2001.941636.spa
dc.relation.referencesM. H. J. Bollen y F. Hassan, Integration of distributed generation in the power system. John wiley & sons, 2011, vol. 80.spa
dc.relation.referencesV. Quintero-Molina, M. Romero-L y A. Pavas, "Assessment of the hosting capacity in distribution networks with different DG location", en 2017 IEEE Manchester Power- Tech, 2017, pags. 1-6. doi: 10.1109/PTC.2017.7981243.spa
dc.relation.referencesK. A. Wheeler, S. O. Faried y M. Elsamahy, "Fault impedance effects on distributed generation influences in overcurrent protection", en 2017 IEEE Manchester PowerTech, 2017, p ags. 1-6. doi: 10.1109/PTC.2017.7980847.spa
dc.relation.referencesC. Vera, J. Valbuena, A. Marulanda y A. Pavas, "Assessment of Increasing PV Penetration Levels on Step Voltage Regulators Performance", en 2018 IEEE PES Trans- mission Distribution Conference and Exhibition - Latin America (T&D-LA), 2018, pags. 1-5. doi: 10.1109/TDC-LA.2018.8511789.spa
dc.relation.references"Resolucion CREG 030 de 2018, Autogeneracion a pequeña escala de generacion distribuida en el sistema interconectado nacional", Comision de Regulacion de Energia y Gas (CREG), Ministerio de Minas y Energia, Republica de Colombia, pags. 1-27, feb. de 2018. doi: 10.1109/IEEESTD.2012.6209381.spa
dc.relation.referencesJ. Valbuena G y A. Pavas, "Loss of Coordination in a Protection Scheme due to DG assessed by means of Reliability Analysis", en 2019 IEEE Milan PowerTech, 2019, pags. 1-6. doi: 10.1109/PTC.2019.8810984.spa
dc.relation.referencesK. A. Wheeler, S. O. Faried y M. Elsamahy, "Assessment of distributed generation influences on fuse-recloser protection systems in radial distribution networks", en 2016 IEEE/PES Transmission and Distribution Conference and Exposition (T&D), mayo de 2016, pags. 1-5. doi: 10.1109/TDC.2016.7519917.spa
dc.relation.referencesG. A. Quiroga, H. Kagan, J. C. C. Amasifen, C. F. M. Almeida y E. Vicentini, "Evaluation of distributed generation impacts on distribution networks under different penetration scenarios", en 2015 IEEE PES Innovative Smart Grid Technologies Latin America (ISGT LATAM), oct. de 2015, pags. 136-141. doi: 10.1109/ISGT-LA.2015.7381142.spa
dc.relation.referencesP. Barker, "Overvoltage considerations in applying distributed resources on power systems", en IEEE Power Engineering Society Summer Meeting,, vol. 1, 2002, pags. 109-114. doi: 10.1109/PESS.2002.1043188.spa
dc.relation.referencesG. A. Quiroga, C. F. M. Almeida, H. Kagan y N. Kagan, "Protection System Considerations in Networks with Distributed Generation", en Electric Distribution Network Management and Control, Springer, 2018, pags. 255-280.spa
dc.relation.referencesG. Julian Valbuena y A. Pavas, "Assessment of DG Effect on a Protection Scheme considering High Impedance Faults", en 2019 IEEE Workshop on Power Electronics and Power Quality Applications (PEPQA), mayo de 2019, pags. 1-6. doi: 10.1109/ PEPQA.2019.8851563.spa
dc.relation.referencesA. P. Kujur y T. Biswal, "Detection of high impedance fault in distribution system considering distributed generation", en 2017 International Conference on Innovative Mechanisms for Industry Applications (ICIMIA), feb. de 2017, pags. 406-410. doi: 10.1109/ICIMIA.2017.7975646.spa
dc.relation.referencesT. M. Lai, L. A. Snider y E. Lo, "Wavelet transform based relay algorithm for the detection of stochastic high impedance faults", Electric Power Systems Research, vol. 76, no 8, pags. 626-633, 2006, issn: 0378-7796. doi: https://doi.org/10.1016/j. epsr.2005.12.021. direccion: http://www.sciencedirect.com/science/article/ pii/S0378779605002816.spa
dc.relation.referencesM. Gomes, P. Coelho y C. Moreira, "Microgrid Protection Schemes", en Microgrids Design and Implementation, A. C. de Souza y M. Castilla, eds., Cham: Springer International Publishing, 2019, pags. 311-336, isbn: 978-3-319-98687-6. doi: 10.1007/978- 3-319-98687-6{\_}12. direcci on: https://doi.org/10.1007/978-3-319-98687- 6_12.spa
dc.relation.referencesA. Oudalov, "Advanced Architectures and Control Concepts for More MicroGrids", en INESC Porto contribution, INESC Porto contribution, 2008.spa
dc.relation.referencesN. Schaefer, T. Degner, A. Shustov y T. Keil, 2Adaptive protection system for distribution networks with distributed energy resources", 2010, pags. 1-5. doi: 10.1049/ cp.2010.0344.spa
dc.relation.referencesA. Oudalov y A. Fidigatti, "Adaptive network protection in microgrids", International Journal of Distributed Energy Resources, vol. 5, no 3, pags. 201-226, 2009.spa
dc.relation.referencesJ. Li, J. He, H. Zhang, F. Xie, Z. Bo y T. Yip, "Research on adaptive protection based on integrated protection", en 2011 International Conference on Advanced Power System Automation and Protection, vol. 2, oct. de 2011, pags. 848-852. doi: 10.1109/ APAP.2011.6180714.spa
dc.relation.referencesS. Dambhare, S. A. Soman y M. C. Chandorkar, "Adaptive Current Di erential Protection Schemes for Transmission-Line Protection", IEEE Transactions on Power De- livery, vol. 24, n.o 4, pags. 1832-1841, oct. de 2009, issn: 1937-4208. doi: 10.1109/ TPWRD.2009.2028801.spa
dc.relation.referencesP. K. Gangadharan, T. S. Sidhu y A. Klimek, "Influence of current transformer saturation on line current differential protection algorithms", IET Generation, Transmission Distribution, vol. 1, n.o 2, pags. 270-277, 2007, issn: 1751-8695. doi: 10.1049/iet- gtd:20060138.spa
dc.rightsDerechos reservados - Universidad Nacional de Colombiaspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.rights.licenseAtribución-NoComercial-SinDerivadas 4.0 Internacionalspa
dc.rights.spaAcceso abiertospa
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/spa
dc.subject.ddc620 - Ingeniería y operaciones afinesspa
dc.subject.proposalGeneración distribuidaspa
dc.subject.proposalDistributed generationeng
dc.subject.proposalNivel de penetraciónspa
dc.subject.proposalPenetration leveleng
dc.subject.proposalNivel de dispersiónspa
dc.subject.proposalDispersion leveleng
dc.subject.proposalEsquema de protecciónspa
dc.subject.proposalProtection schemeeng
dc.subject.proposalLoss of protection coordinationeng
dc.subject.proposalPérdida de coordinación de proteccionesspa
dc.subject.proposalLoss of sensitibityeng
dc.subject.proposalPérdida de sensibilidadspa
dc.titleRespuesta de un esquema de protección en distribución incluyendo generación distribuidaspa
dc.title.alternativeResponse of a distribution protection scheme including distributed generationspa
dc.typeTrabajo de grado - Maestríaspa
dc.type.coarhttp://purl.org/coar/resource_type/c_bdccspa
dc.type.coarversionhttp://purl.org/coar/version/c_970fb48d4fbd8a85spa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/masterThesisspa
dc.type.versioninfo:eu-repo/semantics/publishedVersionspa
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2spa

Archivos

Bloque original

Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
1032456684.2020.pdf
Tamaño:
3.69 MB
Formato:
Adobe Portable Document Format

Bloque de licencias

Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
license.txt
Tamaño:
3.9 KB
Formato:
Item-specific license agreed upon to submission
Descripción: