Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability

The growing demand for electricity in the world has led to power systems having to constantly increase their generation capacity and expand their transmission and distribution systems. Consequently, distributed generation has positioned as a technology able to integrate generation close to consumpti...

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Autores:
Beltrán Gallego, Jose David
Castro Montilla, Leidy Daniela
Castro Valencia, Alexandra
Giraldo Muñoz, Camilo Augusto
López García, Dahiana
Tipo de recurso:
Fecha de publicación:
2021
Institución:
Universidad Tecnológica de Bolívar
Repositorio:
Repositorio Institucional UTB
Idioma:
eng
OAI Identifier:
oai:repositorio.utb.edu.co:20.500.12585/10394
Acceso en línea:
https://hdl.handle.net/20.500.12585/10394
Palabra clave:
Distributed Energy Resources
Distributed Generation
Distribution Network
Islanding Operation
Microgrids
Network Congestion
620
Rights
openAccess
License
http://creativecommons.org/licenses/by/4.0/
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dc.title.spa.fl_str_mv Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
title Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
spellingShingle Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
Distributed Energy Resources
Distributed Generation
Distribution Network
Islanding Operation
Microgrids
Network Congestion
620
title_short Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
title_full Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
title_fullStr Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
title_full_unstemmed Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
title_sort Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability
dc.creator.fl_str_mv Beltrán Gallego, Jose David
Castro Montilla, Leidy Daniela
Castro Valencia, Alexandra
Giraldo Muñoz, Camilo Augusto
López García, Dahiana
dc.contributor.author.none.fl_str_mv Beltrán Gallego, Jose David
Castro Montilla, Leidy Daniela
Castro Valencia, Alexandra
Giraldo Muñoz, Camilo Augusto
López García, Dahiana
dc.subject.keywords.spa.fl_str_mv Distributed Energy Resources
Distributed Generation
Distribution Network
Islanding Operation
Microgrids
Network Congestion
topic Distributed Energy Resources
Distributed Generation
Distribution Network
Islanding Operation
Microgrids
Network Congestion
620
dc.subject.unesco.none.fl_str_mv 620
description The growing demand for electricity in the world has led to power systems having to constantly increase their generation capacity and expand their transmission and distribution systems. Consequently, distributed generation has positioned as a technology able to integrate generation close to consumption centers, freeing up capacity in the transport systems, which can be translated into a deferral of investments in network expansion. Therefore, this paper analyzes the impact of the inclusion of distributed generation in the congestion of a typical distribution network and evaluates the potential of providing the island operation capability ancillary service in a section of the system to identify the possible challenges and benefits that the development of this technical support service could have in typical Colombian distribution networks.
publishDate 2021
dc.date.issued.none.fl_str_mv 2021-12-15
dc.date.accessioned.none.fl_str_mv 2022-01-21T20:04:50Z
dc.date.available.none.fl_str_mv 2022-01-21T20:04:50Z
dc.date.submitted.none.fl_str_mv 2022-01-21
dc.type.coarversion.fl_str_mv http://purl.org/coar/version/c_970fb48d4fbd8a85
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dc.identifier.citation.spa.fl_str_mv Beltrán Gallego, J., Castro Montilla, L., Castro Valencia, A., Giraldo Muñoz, C., & López García, D. (2021). Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability. Transactions on Energy Systems and Engineering Applications, 2(2), 15-22. Retrieved from https://revistas.utb.edu.co/index.php/tesea/article/view/441
dc.identifier.issn.none.fl_str_mv 2745-0120
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12585/10394
dc.identifier.doi.none.fl_str_mv doi.org/10.32397/tesea.vol2.n2.3
dc.identifier.instname.spa.fl_str_mv Universidad Tecnológica de Bolívar
dc.identifier.reponame.spa.fl_str_mv Repositorio Universidad Tecnológica de Bolívar
identifier_str_mv Beltrán Gallego, J., Castro Montilla, L., Castro Valencia, A., Giraldo Muñoz, C., & López García, D. (2021). Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability. Transactions on Energy Systems and Engineering Applications, 2(2), 15-22. Retrieved from https://revistas.utb.edu.co/index.php/tesea/article/view/441
2745-0120
doi.org/10.32397/tesea.vol2.n2.3
Universidad Tecnológica de Bolívar
Repositorio Universidad Tecnológica de Bolívar
url https://hdl.handle.net/20.500.12585/10394
dc.language.iso.spa.fl_str_mv eng
language eng
dc.rights.coar.fl_str_mv http://purl.org/coar/access_right/c_abf2
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dc.rights.accessRights.spa.fl_str_mv info:eu-repo/semantics/openAccess
dc.rights.cc.*.fl_str_mv Atribución 4.0 Internacional
rights_invalid_str_mv http://creativecommons.org/licenses/by/4.0/
Atribución 4.0 Internacional
http://purl.org/coar/access_right/c_abf2
eu_rights_str_mv openAccess
dc.format.extent.none.fl_str_mv 8 páginas
dc.format.mimetype.spa.fl_str_mv application/pdf
dc.publisher.place.spa.fl_str_mv Cartagena de Indias
dc.publisher.sede.spa.fl_str_mv Campus Tecnológico
dc.publisher.discipline.spa.fl_str_mv Ingeniería Electrónica
dc.source.spa.fl_str_mv Tesea: transactions on energy systems and engineering applications, vol. 2 no. 02
institution Universidad Tecnológica de Bolívar
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spelling Beltrán Gallego, Jose David30c51037-2b5d-49b6-bb47-77e1d64ec546Castro Montilla, Leidy Danielabd4e87f8-f327-4c47-91db-6f95bc81241cCastro Valencia, Alexandra2fa763a7-f616-45be-80e0-98c59aa3de45Giraldo Muñoz, Camilo Augustof29caffe-6a67-463f-8bab-a42d2d83c289López García, Dahiana67fa29e3-3364-43b7-8b94-4d3de6f1425e2022-01-21T20:04:50Z2022-01-21T20:04:50Z2021-12-152022-01-21Beltrán Gallego, J., Castro Montilla, L., Castro Valencia, A., Giraldo Muñoz, C., & López García, D. (2021). Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capability. Transactions on Energy Systems and Engineering Applications, 2(2), 15-22. Retrieved from https://revistas.utb.edu.co/index.php/tesea/article/view/4412745-0120https://hdl.handle.net/20.500.12585/10394doi.org/10.32397/tesea.vol2.n2.3Universidad Tecnológica de BolívarRepositorio Universidad Tecnológica de BolívarThe growing demand for electricity in the world has led to power systems having to constantly increase their generation capacity and expand their transmission and distribution systems. Consequently, distributed generation has positioned as a technology able to integrate generation close to consumption centers, freeing up capacity in the transport systems, which can be translated into a deferral of investments in network expansion. Therefore, this paper analyzes the impact of the inclusion of distributed generation in the congestion of a typical distribution network and evaluates the potential of providing the island operation capability ancillary service in a section of the system to identify the possible challenges and benefits that the development of this technical support service could have in typical Colombian distribution networks.Universidad Tecnológica de Bolívar8 páginasapplication/pdfenghttp://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/openAccessAtribución 4.0 Internacionalhttp://purl.org/coar/access_right/c_abf2Tesea: transactions on energy systems and engineering applications, vol. 2 no. 02Impacts of the Inclusion of Distributed Generation on Congestion of Distribution Networks and in the Islanding Operation Capabilityinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/resource_type/c_2df8fbb1http://purl.org/coar/version/c_970fb48d4fbd8a85Distributed Energy ResourcesDistributed GenerationDistribution NetworkIslanding OperationMicrogridsNetwork Congestion620Cartagena de IndiasCampus TecnológicoIngeniería ElectrónicaInvestigadoresF. P. Sioshansi,Smart Grid - Integrating Renewable, Distributed &Efficient Energy, Menlo Ener. 2012.S. Chowdhury, S. P. Chowdhury, and P. Crossley,Microgrids and activedistribution networks. 2009.J. A. Gonz ́alez, “An ́alisis t ́ecnico para la implementaci ́on de la capacidadde operaci ́on por isla a partir de la generaci ́on distribuida provenientede cogeneraci ́on,” Universidad Nacional de Colombia, sede ManizalesFacultad, 2020.H. D. Mathur, “Enhancement of power system quality using distributedgeneration,”PECon2010 - 2010 IEEE Int. Conf. Power Energy, pp.567–572, 2010, doi: 10.1109/PECON.2010.5697646.J. D. Mina-Casaran, D. F. Echeverry, and C. A. Lozano, “Demandresponse integration in microgrid planning as a strategy for energytransition in power systems,”IET Renew. Power Gener., vol. 15, no. 4,pp. 889–902, 2021, doi: 10.1049/rpg2.12080J. D. Mar ́ın Jim ́enez, “An ́alisis para la provisi ́on del Servicio Comple-mentario de Capacidad de Operaci ́on por Islas a partir de Recursos En-erg ́eticos Distribuidos en ambientes desregulados,” Universidad Nacionalde Colombia, 2017.J. D. Mar ́ın-Jim ́enez, S. X. Carvajal-Quintero, and A. Arango-Manrique,“Discusi ́on de la implementaci ́on en Colombia del servicio complemen-tario capacidad de operaci ́on por islas,”Energ ́etica, vol. 0, no. 43, pp.99–108, 2014.S. P. Chowdhury, S. Chowdhury, and P. A. Crossley, “UK scenarioof islanded operation of active distribution networks with renewabledistributed generators,”Int. J. Electr. Power Energy Syst., vol. 33, no.7, pp. 1251–1255, 2011, doi: 10.1016/j.ijepes.2011.01.004IEEE Standards Coordinating - Committee 21,IEEE Guide for Design,Operation, and Integration of Distributed Resource Island Systems withElectric Power Systems, no. July. 2011A. O. Egorov, S. A. Eroshenko, V. O. Samoylenko, P. V. Kolobov,and D. A. Glushkov, “Island Mode of Low Capacity Generators Op-eration,”Adv. Mater. Res., vol. 1008–1009, pp. 426–429, Aug. 2014, doi:10.4028/www.scientific.net/AMR.1008-1009.426O. Palizban and K. Kauhaniemi, “Microgrid control principles in islandmode operation,” in2013 IEEE Grenoble Conference, Jun. 2013, pp. 1–6,doi: 10.1109/PTC.2013.6652453D. L ́opez-Garc ́ıa, “Caracterizaci ́on de un esquema remunerativo para laparticipaci ́on de la demanda en la prestaci ́on del servicio complementariode control de frecuencia en el mercado el ́ectrico colombiano,” 2019J. Munsch, “Formaci ́on intencional de islas en sistemas el ́ectricos depotencia con generaci ́on e ́olica,” 2014P. F. V ́asquez Miranda and N. R. Fabara Tobar, “Propuesta para lograrla Operaci ́on en Isla Intencional de un Sistema real de Distribuci ́on quedispone de Generaci ́on Distribuida,” inXXVII Jornadas en Ingenier ́ıaEl ́ectrica y Electr ́onica, 2017, vol. 27, pp. 201–208IEEE Distribution System Analysis Subcomitte, “IEEE 37 NodeTestFeeder.” 1992.XMSAESP,“Pronosticooficialdedemanda,”2020.https://www.colibri.udelar.edu.uy/jspui/handle/20.500.12008/5208.J. C. Hern ́andez, A. Medina, and F. Jurado, “Optimal allocation andsizing for profitability and voltage enhancement of PV systems onfeeders,” Renew. Energy, vol. 32, no. 10, pp. 1768–1789, Aug. 2007,doi: 10.1016/j.renene.2006.11.003Universidad Nacional de Colombia: Grupo de Investigaci ́on Environ-mental energy and education policy e3p, “Base de datos panel solarfotovoltaico Universidad Nacional de Colombia, Sede Manizales, Campusla Nubia, Bloque W.”V. Telukunta, J. Pradhan, A. Agrawal, M. Singh, and S. G. Srivani, “Pro-tection challenges under bulk penetration of renewable energy resourcesin power systems: A review,” CSEE J. Power Energy Syst., vol. 3, no. 4,pp. 365–379, Dec. 2017, doi: 10.17775/CSEEJPES.2017.00030G. Antonova, M. Nardi, A. Scott, and M. Pesin, “Distributed gen-eration and its impact on power grids and microgrids protection,”2012 65th Annu. Conf. Prot. 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