Diseño comparativo de esquemas de comunicaciones para la optimización del sistema de protección en configuraciones típicas de microrredes
| dc.contributor.advisor | Gallego Vega, Luis Eduardo | |
| dc.contributor.author | Sotomonte Santamaría, John Felipe | |
| dc.date.accessioned | 2026-02-10T23:58:31Z | |
| dc.date.available | 2026-02-10T23:58:31Z | |
| dc.date.issued | 2025-11-21 | |
| dc.description | ilustraciones a color, diagramas, fotografías, tablas | spa |
| dc.description.abstract | Este trabajo presenta el diseño comparativo de esquemas de protección para microrredes radiales y en malla, integrando el estándar IEC 61850 y el protocolo PRP para comunicaciones redundantes. Se analizaron las funciones 87, 21 y 67 considerando parámetros de latencia, confiabilidad y selectividad. Los resultados demuestran que el esquema 87-PRP ofrece el mejor desempeño, siendo adaptable a cualquier topología, mientras que el 21-PRP es ideal para redes radiales y el 67-PRP muestra limitaciones en redes malladas. La implementación de IEC 61850 asegura interoperabilidad entre fabricantes y mejora la robustez del sistema de protección. (Texto tomado de la fuente) | spa |
| dc.description.abstract | This work presents a comparative design of protection schemes for radial and meshed microgrids using the IEC 61850 standard and the PRP redundant communication protocol. The 87, 21, and 67 functions were analyzed based on latency, reliability, and selectivity. Results show that the 87-PRP scheme achieves the best overall performance and adaptability, the 21-PRP is optimal for radial networks, and the 67-PRP presents limitations in meshed configurations. The use of IEC 61850 ensures interoperability among manufacturers and enhances protection system robustness. | eng |
| dc.description.degreelevel | Maestría | |
| dc.description.degreename | Magíster en Ingeniería - Ingeniería Eléctrica | |
| dc.description.researcharea | Información y telecomunicaciones | |
| dc.format.extent | xviii, 194 páginas | |
| dc.format.mimetype | application/pdf | |
| dc.identifier.instname | Universidad Nacional de Colombia | spa |
| dc.identifier.reponame | Repositorio Institucional Universidad Nacional de Colombia | spa |
| dc.identifier.repourl | https://repositorio.unal.edu.co/ | spa |
| dc.identifier.uri | https://repositorio.unal.edu.co/handle/unal/89482 | |
| dc.language.iso | spa | |
| dc.publisher | Universidad Nacional de Colombia | |
| dc.publisher.branch | Universidad Nacional de Colombia - Sede Bogotá | |
| dc.publisher.department | Departamento de Ingeniería Eléctrica y Electrónica | spa |
| dc.publisher.faculty | Facultad de Ingeniería | |
| dc.publisher.place | Bogotá, Colombia | |
| dc.publisher.program | Bogotá - Ingeniería - Maestría en Ingeniería - Ingeniería Eléctrica | |
| dc.relation.references | Abdelgawad, H., & Sood, V. K. (n.d.). A Comprehensive Review on Microgrid Architectures for Distributed Generation. | |
| dc.relation.references | Bastidas, M. (2017). Diseño de una microrred dc en el campus de la universidad de nariño [Trabajo de grado]. Universidad de Nariño | |
| dc.relation.references | Beheshtaein, S., Cuzner, R. M., Forouzesh, M., Savaghebi, M., & Guerrero, J. M. (2019). DC Microgrid Protection: A Comprehensive Review. IEEE Journal of Emerging and Selected Topics in Power Electronics, 1–1. https://doi.org/10.1109/jestpe.2019.2904588 | |
| dc.relation.references | Beheshtaein, S., Cuzner, R., Savaghebi, M., & Guerrero, J. M. (2019). Review on microgrids protection. In IET Generation, Transmission and Distribution (Vol. 13, Issue 6, pp. 743–759). Institution of Engineering and Technology. https://doi.org/10.1049/iet-gtd.2018.5212 | |
| dc.relation.references | CIGRE. (2022). Protection for Future Power Systems with Increased DER Penetration (Issue TB 883). | |
| dc.relation.references | De Giustina, D., Dedè, A., de Sotomayor, A. A., & Ramos, F. (2015). oward an adaptive protection system for the distribution grid by using the IEC 61850. IEEE International Conference on Industrial Technology, 2374–2378. | |
| dc.relation.references | El-Arroudi, K., & Joos, G. (2018). Performance of Interconnection Protection Based on Distance Relaying for Wind Power Distributed Generation. IEEE Transactions on Power Delivery, 33(2), 620–629. https://doi.org/10.1109/TPWRD.2017.2693292 | |
| dc.relation.references | GE Grid Solutions. (2022). GE Multilin UR Series – Technical Guide. | |
| dc.relation.references | Gómez-Luna, E., Candelo, J. E., Marlés, E., Guardiola, J. M., & de la Cruz, J. (2019). Impact of adaptive protections in electric microgrids, challenges and future trends. In Journal of Engineering Science and Technology Review (Vol. 12, Issue 6, pp. 60–69). Eastern Macedonia and Thrace Institute of Technology. https://doi.org/10.25103/jestr.126.08 | |
| dc.relation.references | Gutierrez-Rojas, D., Nardelli, P. H. J., Mendes, G., & Popovski, P. (2021). Review of the State of the Art on Adaptive Protection for Microgrids Based on Communications. IEEE Transactions on Industrial Informatics, 17(3), 1539– 1552. https://doi.org/10.1109/TII.2020.3006845 | |
| dc.relation.references | Habib, H. F., Lashway, C. R., & Mohammed, O. A. (2018). A Review of Communication Failure Impacts on Adaptive Microgrid Protection Schemes and the Use of Energy Storage as a Contingency. IEEE Transactions on Industry Applications, 54(2), 1194–1207. https://doi.org/10.1109/TIA.2017.2776858 | |
| dc.relation.references | Horowitz, S. H., & Phadke, A. G. (2014). Power System Relaying (4th ed.). John Wiley & Sons | |
| dc.relation.references | IEC. (2010). IEC 60255 - Measuring relays and protection equipment. | |
| dc.relation.references | IEC 61850 Communication Networks and Systems for Power Utility Automation. (2013). https://webstore.iec.ch/publication/6028 | |
| dc.relation.references | IEC 62439. (2016). IEC 62439-3:2016 Industrial communication networks – High availability automation networks – Part 3: Parallel Redundancy Protocol (PRP) and High-availability Seamless Redundancy (HSR). | |
| dc.relation.references | IEC TR 61850-90-4. (2013). IEC TR 61850-90-4:2013 Communication networks and systems for power utility automation – Part 90-4: Network engineering guidelines. | |
| dc.relation.references | IEEE 1547. (2018). IEEE Standard for Interconnection and Interoperability of Distributed Energy Resources with Associated Electric Power Systems Interfaces (Issue IEEE Std 1547-2018). | |
| dc.relation.references | IEEE Draft Standard Profile for Use of IEEE 1588 Precision Time Protocol in Power System Applications. (2015). IEEE PC37.238/D16, September 2015, 1–49. | |
| dc.relation.references | IEEE Power System Relaying, & Committee, C. (2021). IEEE Guide for Protective Relay Applications to Distribution Lines. | |
| dc.relation.references | International Electrotechnical Commission. (2021). IEC 62786:2021 - Distributed Energy Resources (DER) - Connection with the grid - Requirements for functional aspects. https://webstore.iec.ch/publication/66641 | |
| dc.relation.references | Kumar, D., Zare, F., & Ghosh, A. (2017). DC Microgrid Technology: System Architectures, AC Grid Interfaces, Grounding Schemes, Power Quality, Communication Networks, Applications, and Standardizations Aspects. IEEE Access, 5, 12230–12256. https://doi.org/10.1109/ACCESS.2017.2705914 | |
| dc.relation.references | Lin, H., Sun, K., Tan, Z. H., Liu, C., Guerrero, J. M., & Vasquez, J. C. (2019). Adaptive protection combined with machine learning for microgrids. IET Generation, Transmission and Distribution, 13(6), 770–779. https://doi.org/10.1049/iet-gtd.2018.6230 | |
| dc.relation.references | Mauricio, O., & Castillo, F. (2021). DISEÑO DEL SISTEMA DE PROTECCIONES DE DOS MICRORREDES CONECTADAS A UN SISTEMA DÉBIL. | |
| dc.relation.references | Memon, A. A., & Kauhaniemi, K. (2020). An adaptive protection for radial AC microgrid using IEC 61850 communication standard: Algorithm proposal using offline simulations. Energies, 13(20). https://doi.org/10.3390/en13205316 | |
| dc.relation.references | Mirsaeidi, S., Dong, X., Shi, S., & Wang, B. (2017). AC and DC microgrids: A review on protection issues and approaches. In Journal of Electrical Engineering and Technology (Vol. 12, Issue 6, pp. 2089–2098). Korean Institute of Electrical Engineers. https://doi.org/10.5370/JEET.2017.12.6.2089 | |
| dc.relation.references | Nikolaidis, V. C., Papanikolaou, E., & Safigianni, A. S. (2016). A communicationassisted overcurrent protection scheme for radial distribution systems with distributed generation. IEEE Transactions on Smart Grid, 7(1), 114–123. https://doi.org/10.1109/TSG.2015.2411216 | |
| dc.relation.references | Patrao, I., Figueres, E., Garcerá, G., & González-Medina, R. (2015). Microgrid architectures for low voltage distributed generation. In Renewable and Sustainable Energy Reviews (Vol. 43, pp. 415–424). Elsevier Ltd. https://doi.org/10.1016/j.rser.2014.11.054 | |
| dc.relation.references | Razavi, F., Joorabian, M., & Gholipour, E. (2019). Protection schemes for microgrids: A review. Renewable and Sustainable Energy Reviews, 105, 1–20. https://doi.org/10.1016/j.rser.2019.01.033 | |
| dc.relation.references | Razavi, S. E., Rahimi, E., Javadi, M. S., Nezhad, A. E., Lotfi, M., Shafie-khah, M., & Catalão, J. P. S. (2019). Impact of distributed generation on protection and voltage regulation of distribution systems: A review. In Renewable and Sustainable Energy Reviews (Vol. 105, pp. 157–167). Elsevier Ltd. https://doi.org/10.1016/j.rser.2019.01.050 | |
| dc.relation.references | Schweitzer Engineering Laboratories SEL. (2020). SEL-400 Series Relays Instruction Manual. | |
| dc.relation.references | Schweitzer Engineering Laboratories (SEL). (2021). Ethernet Redundancy Using PRP and HSR | |
| dc.relation.references | Shahgholian, G. (2021). A brief review on microgrids: Operation, applications, modeling, and control. In International Transactions on Electrical Energy Systems (Vol. 31, Issue 6). John Wiley and Sons Ltd. https://doi.org/10.1002/2050-7038.12885 | |
| dc.relation.references | Siemens AG. (2021). SIPROTEC 5 Protection Relays – Technical Manual. | |
| dc.relation.references | Siemens AG. (2024). SIPROTEC 5 Communication Protocols. | |
| dc.relation.references | Sinclair, A., Finney, D., Martin, D., & Sharma, P. (2014). Distance protection in distribution systems: How it assists with integrating distributed resources. IEEE Transactions on Industry Applications, 50(3), 2186–2196. https://doi.org/10.1109/TIA.2013.2288426 | |
| dc.relation.references | SIPROTEC 5 Communication Protocols. (2024). | |
| dc.relation.references | Soshinskaya, M., Crijns-Graus, W. H. J., Guerrero, J. M., & Vasquez, J. C. (2014). Microgrids: Experiences, barriers and success factors. In Renewable and Sustainable Energy Reviews (Vol. 40, pp. 659–672). Elsevier Ltd. https://doi.org/10.1016/j.rser.2014.07.198 | |
| dc.relation.references | Ustun, T. S., Ozansoy, C., & Zayegh, A. (2011). A microgrid protection system with central protection unit and extensive communication. 2011 10th International Conference on Environment and Electrical Engineering, 1–4. https://doi.org/10.1109/EEEIC.2011.5874777 | |
| dc.relation.references | Velasco, D., Trujillo, C. L., Garcerá, G., & Figueres, E. (2010). Review of antiislanding techniques in distributed generators. In Renewable and Sustainable Energy Reviews (Vol. 14, Issue 6, pp. 1608–1614). https://doi.org/10.1016/j.rser.2010.02.011 | |
| dc.relation.references | Wong, T. Y., Lau, W. H., Chung, H. S. H., & Shum, C. (2022). A feasibility study of using Manufacturing Message Specification report gateway model for IEC61850 inter-substation type-1 messaging over Wide Area Network. Sustainable Energy, Grids and Networks, 30. https://doi.org/10.1016/j.segan.2022.100612 | |
| dc.relation.references | Ziegler Gerard. (2011). Numerical distance protection, principles and applications (4th edition). | |
| dc.rights.accessrights | info:eu-repo/semantics/openAccess | |
| dc.rights.license | Atribución-NoComercial-SinDerivadas 4.0 Internacional | |
| dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/4.0/ | |
| dc.subject.ddc | 620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería | |
| dc.subject.proposal | Microrredes | spa |
| dc.subject.proposal | IEC 61850 | spa |
| dc.subject.proposal | PRP | spa |
| dc.subject.proposal | Protección eléctrica | spa |
| dc.subject.proposal | Interoperabilidad | spa |
| dc.subject.proposal | Microgrids | eng |
| dc.subject.proposal | IEC 61850 | eng |
| dc.subject.proposal | PRP | eng |
| dc.subject.proposal | Power protection | eng |
| dc.subject.proposal | Interoperability | eng |
| dc.subject.unesco | Industria eléctrica | spa |
| dc.subject.unesco | Electrical industry | eng |
| dc.subject.unesco | Dispositivo de seguridad | spa |
| dc.subject.unesco | Dispositivo de seguridad | eng |
| dc.subject.unesco | Tecnología de la comunicación | spa |
| dc.subject.unesco | Communication technology | eng |
| dc.title | Diseño comparativo de esquemas de comunicaciones para la optimización del sistema de protección en configuraciones típicas de microrredes | spa |
| dc.title.translated | Comparative design of communication schemes for the optimization of the protection system in typical microgrid configurations | eng |
| dc.type | Trabajo de grado - Maestría | |
| dc.type.coar | http://purl.org/coar/resource_type/c_bdcc | |
| dc.type.coarversion | http://purl.org/coar/version/c_ab4af688f83e57aa | |
| dc.type.content | Text | |
| dc.type.driver | info:eu-repo/semantics/masterThesis | |
| dc.type.redcol | http://purl.org/redcol/resource_type/TM | |
| dc.type.version | info:eu-repo/semantics/acceptedVersion | |
| dcterms.audience.professionaldevelopment | Investigadores | |
| oaire.accessrights | http://purl.org/coar/access_right/c_abf2 |
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