Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable
diagramas, tablas
- Autores:
-
Jiménez Gómez, Steven
- Tipo de recurso:
- Fecha de publicación:
- 2022
- Institución:
- Universidad Nacional de Colombia
- Repositorio:
- Universidad Nacional de Colombia
- Idioma:
- spa
- OAI Identifier:
- oai:repositorio.unal.edu.co:unal/82214
- Palabra clave:
- 620 - Ingeniería y operaciones afines
620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería
Sistemas eléctricos
Electrical systems
Analisis dinamico
Sistemas de potencia
Generación variable
Estabilidad
Estabilidad de frecuencia
Dynamic analysis
Power systems
Variable generation
Stability
Frequency stability
- Rights
- openAccess
- License
- Atribución-NoComercial-CompartirIgual 4.0 Internacional
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|
dc.title.spa.fl_str_mv |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable |
dc.title.translated.eng.fl_str_mv |
Dynamic analysis of frequency stability on power system with integration of variable generation |
title |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable |
spellingShingle |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable 620 - Ingeniería y operaciones afines 620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería Sistemas eléctricos Electrical systems Analisis dinamico Sistemas de potencia Generación variable Estabilidad Estabilidad de frecuencia Dynamic analysis Power systems Variable generation Stability Frequency stability |
title_short |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable |
title_full |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable |
title_fullStr |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable |
title_full_unstemmed |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable |
title_sort |
Análisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variable |
dc.creator.fl_str_mv |
Jiménez Gómez, Steven |
dc.contributor.advisor.none.fl_str_mv |
Botero Castro, Héctor Antonio |
dc.contributor.author.none.fl_str_mv |
Jiménez Gómez, Steven |
dc.subject.ddc.spa.fl_str_mv |
620 - Ingeniería y operaciones afines 620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería |
topic |
620 - Ingeniería y operaciones afines 620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería Sistemas eléctricos Electrical systems Analisis dinamico Sistemas de potencia Generación variable Estabilidad Estabilidad de frecuencia Dynamic analysis Power systems Variable generation Stability Frequency stability |
dc.subject.lemb.none.fl_str_mv |
Sistemas eléctricos Electrical systems |
dc.subject.proposal.fra.fl_str_mv |
Analisis dinamico |
dc.subject.proposal.spa.fl_str_mv |
Sistemas de potencia Generación variable Estabilidad Estabilidad de frecuencia |
dc.subject.proposal.eng.fl_str_mv |
Dynamic analysis Power systems Variable generation Stability Frequency stability |
description |
diagramas, tablas |
publishDate |
2022 |
dc.date.accessioned.none.fl_str_mv |
2022-08-31T15:32:16Z |
dc.date.available.none.fl_str_mv |
2022-08-31T15:32:16Z |
dc.date.issued.none.fl_str_mv |
2022-08-19 |
dc.type.spa.fl_str_mv |
Trabajo de grado - Maestría |
dc.type.driver.spa.fl_str_mv |
info:eu-repo/semantics/masterThesis |
dc.type.version.spa.fl_str_mv |
info:eu-repo/semantics/acceptedVersion |
dc.type.content.spa.fl_str_mv |
Text |
dc.type.redcol.spa.fl_str_mv |
http://purl.org/redcol/resource_type/TM |
status_str |
acceptedVersion |
dc.identifier.uri.none.fl_str_mv |
https://repositorio.unal.edu.co/handle/unal/82214 |
dc.identifier.instname.spa.fl_str_mv |
Universidad Nacional de Colombia |
dc.identifier.reponame.spa.fl_str_mv |
Repositorio Institucional Universidad Nacional de Colombia |
dc.identifier.repourl.spa.fl_str_mv |
https://repositorio.unal.edu.co/ |
url |
https://repositorio.unal.edu.co/handle/unal/82214 https://repositorio.unal.edu.co/ |
identifier_str_mv |
Universidad Nacional de Colombia Repositorio Institucional Universidad Nacional de Colombia |
dc.language.iso.spa.fl_str_mv |
spa |
language |
spa |
dc.relation.references.spa.fl_str_mv |
Alizadeh, M. I. ; Parsa Moghaddam, M. ; Amjady, N. ; Siano, P. ; Sheikh-El- Eslami, M. K.: Flexibility in future power systems with high renewable penetration: A review. En: Renewable and Sustainable Energy Reviews 57 (2016), p. 1186–1193. – ISSN 18790690 Brandst¨att, Christine ; Brunekreeft, Gert ; Furusawa, Ken ; Hattori, Toru: Distribution planning and pricing in view of increasing shares of intermittent, renewable energy in Germany and Japan. En: ECONSTOR Bremen Ene (2015) Chen, Hongjing ; Wang, Jianxue ; Zhang, Yao: Economic dispatch of hydro-thermal power system with large-scale wind power penetration. En: Asia-Pacific Power and Energy Engineering Conference, APPEEC (2012), p. 0–3. – ISBN 9781457705472 Chen, Runze ; Sun, Hongbin ; Guo, Qinglai ; Li, Zhigang ; Zhang, Boming: A generation-interval-based mechanism for managing the power generation uncertainties of variable generation. En: IEEE Transactions on Sustainable Energy 7 (2016), Nr. 3, p. 1060–1070. – ISSN 19493029 Chen, Zhe ; Guerrero, Josep M. ; Blaabjerg, Frede: A review of the state of the art of power electronics for wind turbines. En: IEEE Transactions on Power Electronics 24 (2009), Nr. 8, p. 1859–1875. – ISSN 08858993 Coelho, Ernane Antonio A. ; Cortizo, Porfirio C. ; Garcia, Pedro Francisco D.: Small-signal stability for parallel-connected inverters in stand-alone ac supply systems. En: IEEE Transactions on Industry Applications 38 (2002), Nr. 2, p. 533–542. – ISBN 0093–9994 Cozzi, Laura (International Energy A. ; Gould, Tim (International Energy A.: World Energy Outlook 2021. (2021), p. 1–386 Dai, J.J.: Automatic Load-Shedding Protection at a Coal-Chemical Plant: Examining and Designing Effective Low-Frequency Backup Protection Methods. En: IEEE Industry Applications Magazine 26 (2020), sep, Nr. 5, p. 77–88. – ISSN 1077–2618 Dreidy, Mohammad ; Mokhlis, H. ; Mekhilef, Saad: Inertia response and frequency control techniques for renewable energy sources: A review. En: Renewable and Sustainable Energy Reviews 69 (2017), Nr. November 2015, p. 144–155. – ISBN 1364–0321 Garcia-Garre, Ana ; Gabaldon, Antonio ; Fernandez-Jimenez, Luis A. ; Alvarez-Bel, Carlos ; Ramirez-Rosado, Ignacio J. ; Valero-Verdu, Sergio ; Senabre, Carolina: Evaluation and integration of demand response and photovoltaic generation in institutional buildings. En: 2018 International Conference on Smart Energy Systems and Technologies, SEST 2018 - Proceedings (2018). ISBN 9781538653265 Gautam, Durga ; Goel, Lalit ; Ayyanar, Raja ; Vittal, Vijay ; Harbour, Terry: Control strategy to mitigate the impact of reduced inertia due to doubly fed induction generators on large power systems. En: IEEE Transactions on Power Systems 26 (2011), Nr. 1, p. 214–224. – ISBN 978–1–4577–1001–8 G´omez, Steven J. ; Castro, Hector Antonio B.: Analysis of Frequency Impact in Power Systems with Integration of Renewable Resources. En: 2019 FISE-IEEE/CIGRE Conference - Living the Energy Transition, FISE/CIGRE 2019 (2019). ISBN 9781728142302 Gross, C.A.: Power System Analysis. Second Edi. Wiley, 1986. – ISBN 9780471862062 Hossain, M J. ; Member, Senior ; Mahmud, M A. ; Milano, F ; Member, Senior ; Bacha, S ; Hably, A: Design of Robust Distributed Control for Interconnected Microgrids. En: IEEE Transactions on Smart Grid 7 (2016), Nr. 6, p. 2724–2735. – ISSN 19493053 IRENA: 2021 Tracking SDG7: The Energy Progress Report. (2021), p. 176 Jardim, Jorge L.: Chapter 6 Online Dynamic Security Assessment. Kopiske, Jakob ; Spieker, Sebastian ; Tsatsaronis, George: Value of power plant flexibility in power systems with high shares of variable renewables: A scenario outlook for Germany 2035. En: Energy 137 (2017), p. 823–833. – ISSN 03605442 Kumar, Mahesh ; Member, Student ; Srivastava, S C. ; Member, Senior ; Singh, S N. ; Member, Senior: Control Strategies of a DC Microgrid for Grid Connected and Islanded Operations. En: IEEE Transactions on Smart Grid 6 (2015), Nr. 4, p. 1588–1601 Kundur, Prabha ; Balu, Neal J. ; Lauby, Mark G.: Power system stability and control. New York : McGraw-Hill, 1994 Li, Changgang ; Wu, Yue ; Sun, Yanli ; Zhang, Hengxu ; Liu, Yutian ; Liu, Yilu ; Terzija, Vladimir: Continuous Under-Frequency Load Shedding Scheme for Power System Adaptive Frequency Control. En: IEEE Transactions on Power Systems 35 (2020), Nr. 2, p. 950–961. – ISSN 15580679 Lokay, H E. ; Burtnyk, V: Underfrequency for. En: Power (1968), Nr. 3, p. 776–783 Lopes, J.A.P. ; Moreira, C.L. ; Madureira, A.G.: Defining Control Strategies for MicroGrids Islanded Operation. En: IEEE Transactions on Power Systems 21 (2006), may, Nr. 2, p. 916–924. – ISSN 0885–8950 Machowski, Jan ; Bialek, Janusz W. ; Bumby, James R.: Power System Dynamics: Stability and Control. 2008. – 349–350 p.. – ISBN 9780470725580 Markovic, Uros ; Member, Student ; Chu, Zhongda ; Member, Student: LQRBased Adaptive Virtual Synchronous Machine for Power Systems With High Inverter Penetration. En: IEEE Transactions on Sustainable Energy 10 (2019), Nr. 3, p. 1501– 1512 Mirbach, T ; Ohrem, S ; Schild, S ; Moser, A: Impact of a Significant Share of Renewable Energies on the European Power Generation System. (2010), p. 1–6. ISBN 9781424468409 Nassar, Ibrahim ; AlAli, Salaheddin ; Weber, Harald: Effects of Increasing Intermittent Generation on the frequency control of the European Power System. IFAC, 2014. – 3134–3139 p.. – ISBN 9783902823625 Nassar, Ibrahim A. ; Abdella, Mahmoud M.: Impact of replacing thermal power plants by renewable energy on the power system. En: Thermal Science and Engineering Progress 5 (2018), Nr. February, p. 506–515. – ISSN 24519049 Ncwane, Siyanda ; Folly, Komla A.: A review of the impact of integrating wind generation on transient stability. En: 2020 International SAUPEC/RobMech/PRASA Conference, SAUPEC/RobMech/PRASA 2020 (2020), p. 7–12. ISBN 9781728141626 Park, Keon J. ; Son, Sung Y.: A Novel Load Image Profile-Based Electricity Load Clustering Methodology. En: IEEE Access 7 (2019), p. 59048–59058. – ISSN 21693536 Pogaku, Nagaraju ; Prodanovic, Milan ; Green, Timothy C.: Modeling, Analysis and Testing of Autonomous Operation of an Inverter-Based Microgrid. En: IEEE Transactions on Power Electronics 22 (2007), mar, Nr. 2, p. 613–625. – ISSN 0885–8993 Read,Wallace S.: C37.106 - IEEE Guide for Abnormal Frequency Protection for Power Generating Plants. 1995. – 6–7 p.. – ISBN 0738137324 Slotine, J.-J. E. ; Li, W.: Applied Nonlinear Control. 7. Englewood Cliffs, N.J: Prentice Hall, 1991. – ISBN 978–0130408907 Tan, K T. ; Member, Student ; Peng, X Y. ; Member, Student ; So, P L. ; Member, Senior ; Chu, Y C. ; Member, Senior ; Chen, M Z Q.: Centralized Control for Parallel Operation of Distributed Generation Inverters in Microgrids. En: IEEE Transactions on Smart Grid 3 (2012), Nr. 4, p. 1977–1987 Tielens, P. ; van Hertem, Dirk: Grid Inertia and Frequency Control in Power Systems with High Penetration of Renewables. En: Electrical Energy Computer Architectures 0 (2012), Nr. 2, p. 1–6 Tielens, Pieter ; Van Hertem, Dirk: The relevance of inertia in power systems. En: Renewable and Sustainable Energy Reviews 55 (2016), p. 999–1009. – ISBN 1364–0321 Ulbig, Andreas ; Borsche, Theodor S. ; Andersson, G¨oran: Impact of low rotational inertia on power system stability and operation. IFAC, 2014. – 7290–7297 p.. – ISBN 9783902823625 Ulbig, Andreas ; Borsche, Theodor S. ; Andersson, G¨oran: Analyzing Rotational Inertia, Grid Topology and their Role for Power System Stability. En: IFACPapersOnLine 48 (2015), Nr. 30, p. 541–547. – ISSN 24058963 UPME: Plan de Expansi´on de Referencia Generac´ı´on - Transmisi´on 2020 - 2034 / Unidad de Planeaci´on Minero-Energ´etica, UPME. Bogot´a, 2018. – Informe de Investigaci ´on Varaiya, Pravin ; Wu, Felix F. ; Chen, Rong L.: Direct Methods for Transient Stability Analysis of Power Systems: Recent Results. En: Proceedings of the IEEE 73 (1985), Nr. 12, p. 1703–1715. – ISSN 15582256 Vasudevarao, Bharath Varsh M. ; Stifter, Matthias ; Zehetbauer, Paul: Methodology for creating composite standard load profiles based on real load profile analysis. En: IEEE PES Innovative Smart Grid Technologies Conference Europe (2017), p. 0–5. ISBN 9781509033584 Wang, Hao ; Huang, Jianwei: Cooperative Planning of Renewable Generations for Interconnected Microgrids. En: IEEE Transactions on Smart Grid 7 (2016), Nr. 5, p. 2486–2496. – ISSN 19493053 Xu, Guoyi ; Liu, Fanglei ; Hu, Jiaxin ; Bi, Tianshu: Coordination of wind turbines and synchronous generators for system frequency control. En: Renewable Energy 129 (2018), p. 225–236. – ISSN 18790682 Yan, Ruifeng ; Saha, Tapan K. ; Modi, Nilesh ; Masood, Nahid A. ; Mosadeghy, Mehdi: The combined effects of high penetration of wind and PV on power system frequency response. En: Applied Energy 145 (2015), p. 320–330. – ISSN 03062619 Yang, Yongheng ; Kim, Katherine A. ; Ding, Tao: Modeling and Control of PV Systems. En: Control of Power Electronic Converters and Systems (2018), p. 243–268. ISBN 9780128052457 |
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83 páginas |
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dc.publisher.spa.fl_str_mv |
Universidad Nacional de Colombia |
dc.publisher.program.spa.fl_str_mv |
Medellín - Minas - Maestría en Ingeniería - Ingeniería Eléctrica |
dc.publisher.department.spa.fl_str_mv |
Departamento de Ingeniería Eléctrica y Automática |
dc.publisher.faculty.spa.fl_str_mv |
Facultad de Minas |
dc.publisher.place.spa.fl_str_mv |
Medellín, Colombia |
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Universidad Nacional de Colombia - Sede Medellín |
institution |
Universidad Nacional de Colombia |
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Atribución-NoComercial-CompartirIgual 4.0 Internacionalhttp://creativecommons.org/licenses/by-nc-sa/4.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2Botero Castro, Héctor Antoniod95d03cdfdc6f8687d79673fee0b951c600Jiménez Gómez, Steven4b6fbb6c50b24c60b83f7e3683c716232022-08-31T15:32:16Z2022-08-31T15:32:16Z2022-08-19https://repositorio.unal.edu.co/handle/unal/82214Universidad Nacional de ColombiaRepositorio Institucional Universidad Nacional de Colombiahttps://repositorio.unal.edu.co/diagramas, tablasEste trabajo presenta el análisis dinámico de estabilidad de sistemas de potencia con integración variable, tomando como enfoque primario, la inercia como variable de principal impacto frente la transición energética. El trabajo realiza una revisión de la literatura de los diferentes métodos de análisis dinámico. Finalmente, se trabaja con el método de análisis no lineal para evaluar el impacto de frecuencia en sistemas eléctricos de potencia mediante el análisis matemático y gráfico. (Texto tomado de la fuente)This work presents the dynamic stability analysis of power systems with the integration of variable generation, taking inertia as a primary approach as the variable with the main impact on the energy transition. The work carries out a review of the literature on the different methods of dynamic analysis. Finally, the nonlinear analysis method is used to evaluate the impact of frequency on electrical power systems through mathematical and graphical.MaestríaMagíster en Ingeniería - Ingeniería EléctricaSistemas Eléctricos de PotenciaÁrea Curricular de Ingeniería Eléctrica e Ingeniería de Control83 páginasapplication/pdfspaUniversidad Nacional de ColombiaMedellín - Minas - Maestría en Ingeniería - Ingeniería EléctricaDepartamento de Ingeniería Eléctrica y AutomáticaFacultad de MinasMedellín, ColombiaUniversidad Nacional de Colombia - Sede Medellín620 - Ingeniería y operaciones afines620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingenieríaSistemas eléctricosElectrical systemsAnalisis dinamicoSistemas de potenciaGeneración variableEstabilidadEstabilidad de frecuenciaDynamic analysisPower systemsVariable generationStabilityFrequency stabilityAnálisis dinámico de estabilidad de frecuencia en sistemas de potencia con integración de generación variableDynamic analysis of frequency stability on power system with integration of variable generationTrabajo de grado - Maestríainfo:eu-repo/semantics/masterThesisinfo:eu-repo/semantics/acceptedVersionTexthttp://purl.org/redcol/resource_type/TMAlizadeh, M. I. ; Parsa Moghaddam, M. ; Amjady, N. ; Siano, P. ; Sheikh-El- Eslami, M. K.: Flexibility in future power systems with high renewable penetration: A review. En: Renewable and Sustainable Energy Reviews 57 (2016), p. 1186–1193. – ISSN 18790690Brandst¨att, Christine ; Brunekreeft, Gert ; Furusawa, Ken ; Hattori, Toru: Distribution planning and pricing in view of increasing shares of intermittent, renewable energy in Germany and Japan. En: ECONSTOR Bremen Ene (2015)Chen, Hongjing ; Wang, Jianxue ; Zhang, Yao: Economic dispatch of hydro-thermal power system with large-scale wind power penetration. En: Asia-Pacific Power and Energy Engineering Conference, APPEEC (2012), p. 0–3. – ISBN 9781457705472Chen, Runze ; Sun, Hongbin ; Guo, Qinglai ; Li, Zhigang ; Zhang, Boming: A generation-interval-based mechanism for managing the power generation uncertainties of variable generation. En: IEEE Transactions on Sustainable Energy 7 (2016), Nr. 3, p. 1060–1070. – ISSN 19493029Chen, Zhe ; Guerrero, Josep M. ; Blaabjerg, Frede: A review of the state of the art of power electronics for wind turbines. En: IEEE Transactions on Power Electronics 24 (2009), Nr. 8, p. 1859–1875. – ISSN 08858993Coelho, Ernane Antonio A. ; Cortizo, Porfirio C. ; Garcia, Pedro Francisco D.: Small-signal stability for parallel-connected inverters in stand-alone ac supply systems. En: IEEE Transactions on Industry Applications 38 (2002), Nr. 2, p. 533–542. – ISBN 0093–9994Cozzi, Laura (International Energy A. ; Gould, Tim (International Energy A.: World Energy Outlook 2021. (2021), p. 1–386Dai, J.J.: Automatic Load-Shedding Protection at a Coal-Chemical Plant: Examining and Designing Effective Low-Frequency Backup Protection Methods. En: IEEE Industry Applications Magazine 26 (2020), sep, Nr. 5, p. 77–88. – ISSN 1077–2618Dreidy, Mohammad ; Mokhlis, H. ; Mekhilef, Saad: Inertia response and frequency control techniques for renewable energy sources: A review. En: Renewable and Sustainable Energy Reviews 69 (2017), Nr. November 2015, p. 144–155. – ISBN 1364–0321Garcia-Garre, Ana ; Gabaldon, Antonio ; Fernandez-Jimenez, Luis A. ; Alvarez-Bel, Carlos ; Ramirez-Rosado, Ignacio J. ; Valero-Verdu, Sergio ; Senabre, Carolina: Evaluation and integration of demand response and photovoltaic generation in institutional buildings. En: 2018 International Conference on Smart Energy Systems and Technologies, SEST 2018 - Proceedings (2018). ISBN 9781538653265Gautam, Durga ; Goel, Lalit ; Ayyanar, Raja ; Vittal, Vijay ; Harbour, Terry: Control strategy to mitigate the impact of reduced inertia due to doubly fed induction generators on large power systems. En: IEEE Transactions on Power Systems 26 (2011), Nr. 1, p. 214–224. – ISBN 978–1–4577–1001–8G´omez, Steven J. ; Castro, Hector Antonio B.: Analysis of Frequency Impact in Power Systems with Integration of Renewable Resources. En: 2019 FISE-IEEE/CIGRE Conference - Living the Energy Transition, FISE/CIGRE 2019 (2019). ISBN 9781728142302Gross, C.A.: Power System Analysis. Second Edi. Wiley, 1986. – ISBN 9780471862062Hossain, M J. ; Member, Senior ; Mahmud, M A. ; Milano, F ; Member, Senior ; Bacha, S ; Hably, A: Design of Robust Distributed Control for Interconnected Microgrids. En: IEEE Transactions on Smart Grid 7 (2016), Nr. 6, p. 2724–2735. – ISSN 19493053IRENA: 2021 Tracking SDG7: The Energy Progress Report. (2021), p. 176Jardim, Jorge L.: Chapter 6 Online Dynamic Security Assessment.Kopiske, Jakob ; Spieker, Sebastian ; Tsatsaronis, George: Value of power plant flexibility in power systems with high shares of variable renewables: A scenario outlook for Germany 2035. En: Energy 137 (2017), p. 823–833. – ISSN 03605442Kumar, Mahesh ; Member, Student ; Srivastava, S C. ; Member, Senior ; Singh, S N. ; Member, Senior: Control Strategies of a DC Microgrid for Grid Connected and Islanded Operations. En: IEEE Transactions on Smart Grid 6 (2015), Nr. 4, p. 1588–1601Kundur, Prabha ; Balu, Neal J. ; Lauby, Mark G.: Power system stability and control. New York : McGraw-Hill, 1994Li, Changgang ; Wu, Yue ; Sun, Yanli ; Zhang, Hengxu ; Liu, Yutian ; Liu, Yilu ; Terzija, Vladimir: Continuous Under-Frequency Load Shedding Scheme for Power System Adaptive Frequency Control. En: IEEE Transactions on Power Systems 35 (2020), Nr. 2, p. 950–961. – ISSN 15580679Lokay, H E. ; Burtnyk, V: Underfrequency for. En: Power (1968), Nr. 3, p. 776–783Lopes, J.A.P. ; Moreira, C.L. ; Madureira, A.G.: Defining Control Strategies for MicroGrids Islanded Operation. En: IEEE Transactions on Power Systems 21 (2006), may, Nr. 2, p. 916–924. – ISSN 0885–8950Machowski, Jan ; Bialek, Janusz W. ; Bumby, James R.: Power System Dynamics: Stability and Control. 2008. – 349–350 p.. – ISBN 9780470725580Markovic, Uros ; Member, Student ; Chu, Zhongda ; Member, Student: LQRBased Adaptive Virtual Synchronous Machine for Power Systems With High Inverter Penetration. En: IEEE Transactions on Sustainable Energy 10 (2019), Nr. 3, p. 1501– 1512Mirbach, T ; Ohrem, S ; Schild, S ; Moser, A: Impact of a Significant Share of Renewable Energies on the European Power Generation System. (2010), p. 1–6. ISBN 9781424468409Nassar, Ibrahim ; AlAli, Salaheddin ; Weber, Harald: Effects of Increasing Intermittent Generation on the frequency control of the European Power System. IFAC, 2014. – 3134–3139 p.. – ISBN 9783902823625Nassar, Ibrahim A. ; Abdella, Mahmoud M.: Impact of replacing thermal power plants by renewable energy on the power system. En: Thermal Science and Engineering Progress 5 (2018), Nr. February, p. 506–515. – ISSN 24519049Ncwane, Siyanda ; Folly, Komla A.: A review of the impact of integrating wind generation on transient stability. En: 2020 International SAUPEC/RobMech/PRASA Conference, SAUPEC/RobMech/PRASA 2020 (2020), p. 7–12. ISBN 9781728141626Park, Keon J. ; Son, Sung Y.: A Novel Load Image Profile-Based Electricity Load Clustering Methodology. En: IEEE Access 7 (2019), p. 59048–59058. – ISSN 21693536Pogaku, Nagaraju ; Prodanovic, Milan ; Green, Timothy C.: Modeling, Analysis and Testing of Autonomous Operation of an Inverter-Based Microgrid. En: IEEE Transactions on Power Electronics 22 (2007), mar, Nr. 2, p. 613–625. – ISSN 0885–8993Read,Wallace S.: C37.106 - IEEE Guide for Abnormal Frequency Protection for Power Generating Plants. 1995. – 6–7 p.. – ISBN 0738137324Slotine, J.-J. E. ; Li, W.: Applied Nonlinear Control. 7. Englewood Cliffs, N.J: Prentice Hall, 1991. – ISBN 978–0130408907Tan, K T. ; Member, Student ; Peng, X Y. ; Member, Student ; So, P L. ; Member, Senior ; Chu, Y C. ; Member, Senior ; Chen, M Z Q.: Centralized Control for Parallel Operation of Distributed Generation Inverters in Microgrids. En: IEEE Transactions on Smart Grid 3 (2012), Nr. 4, p. 1977–1987Tielens, P. ; van Hertem, Dirk: Grid Inertia and Frequency Control in Power Systems with High Penetration of Renewables. En: Electrical Energy Computer Architectures 0 (2012), Nr. 2, p. 1–6Tielens, Pieter ; Van Hertem, Dirk: The relevance of inertia in power systems. En: Renewable and Sustainable Energy Reviews 55 (2016), p. 999–1009. – ISBN 1364–0321Ulbig, Andreas ; Borsche, Theodor S. ; Andersson, G¨oran: Impact of low rotational inertia on power system stability and operation. 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ISBN 9780128052457EstudiantesORIGINAL1037625023.2021.pdf1037625023.2021.pdfTesis de Maestría en Ingeniería - Ingeniería Eléctricaapplication/pdf2173829https://repositorio.unal.edu.co/bitstream/unal/82214/3/1037625023.2021.pdf5ee55c6b678362248eec8400b35db9d2MD53LICENSElicense.txtlicense.txttext/plain; charset=utf-84074https://repositorio.unal.edu.co/bitstream/unal/82214/2/license.txt8153f7789df02f0a4c9e079953658ab2MD52THUMBNAIL1037625023.2021.pdf.jpg1037625023.2021.pdf.jpgGenerated Thumbnailimage/jpeg4567https://repositorio.unal.edu.co/bitstream/unal/82214/4/1037625023.2021.pdf.jpg30fd51e1bed9e00fcd9c6194aab42f08MD54unal/82214oai:repositorio.unal.edu.co:unal/822142023-08-09 09:34:39.424Repositorio Institucional Universidad Nacional de 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