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Publikationstyp: Beitrag in wissenschaftlicher Zeitschrift
Art der Begutachtung: Peer review (Publikation)
Titel: Analysis of grid events influenced by different levels of renewable integration on extra-large power systems
Autor/-in: Rüeger, Christoph
Dobrowolski, Jean
Segundo Sevilla, Felix Rafael
Korba, Petr
et. al: No
DOI: 10.25046/aj060506
10.21256/zhaw-23150
Erschienen in: Advances in Science, Technology and Engineering Systems Journal
Band(Heft): 6
Heft: 5
Seite(n): 43
Seiten bis: 52
Erscheinungsdatum: 10-Sep-2021
Verlag / Hrsg. Institution: ASTES Journal
ISSN: 2415-6698
Sprache: Englisch
Schlagwörter: Power System Dynamics; Stability; Control; European Grid; Lyapunov Exponent; Inter-Area Oscillation
Fachgebiet (DDC): 333.79: Energie
Zusammenfassung: In this work, the impact of implementing a large amount of decentralized renewable energysources (RES) of different scales on an extra-large power grid is investigated. Three scenariosare created, substituting 10%, 20%, and 30% of the conventional energy production by RES.For this purpose, the initial dynamic model of Continental Europe in combination with theindustrial power system application DIgSILENT PowerFactory was used. In order to comparethe behavior of different applied scenarios, a performance index was developed to evaluate andrank the effects of network disturbances by means of time-domain simulations. The performanceindex was designed based on three different criteria that analyze the oscillatory content andthus, the severity of a given event. The initial power flow of the dynamic model was identifiedas a limiting factor for the integration of RES, therefore two additional power flows weredeveloped following an innovative procedure. Through the methodologies mentioned above, itwas found that Turkey is the most sensitive to such changes, which are amplified by increasingimplementation of RES and often lead to inter-area oscillation.
URI: https://digitalcollection.zhaw.ch/handle/11475/23150
Volltext Version: Publizierte Version
Lizenz (gemäss Verlagsvertrag): CC BY-SA 4.0: Namensnennung - Weitergabe unter gleichen Bedingungen 4.0 International
Departement: School of Engineering
Organisationseinheit: Institut für Energiesysteme und Fluid-Engineering (IEFE)
Publiziert im Rahmen des ZHAW-Projekts: Swiss National Science Foundation (SNF) Scopes Institutional Partnership
SCCER-FURIES PHASE II
Enthalten in den Sammlungen:Publikationen School of Engineering

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Rüeger, C., Dobrowolski, J., Segundo Sevilla, F. R., & Korba, P. (2021). Analysis of grid events influenced by different levels of renewable integration on extra-large power systems. Advances in Science, Technology and Engineering Systems Journal, 6(5), 43–52. https://doi.org/10.25046/aj060506
Rüeger, C. et al. (2021) ‘Analysis of grid events influenced by different levels of renewable integration on extra-large power systems’, Advances in Science, Technology and Engineering Systems Journal, 6(5), pp. 43–52. Available at: https://doi.org/10.25046/aj060506.
C. Rüeger, J. Dobrowolski, F. R. Segundo Sevilla, and P. Korba, “Analysis of grid events influenced by different levels of renewable integration on extra-large power systems,” Advances in Science, Technology and Engineering Systems Journal, vol. 6, no. 5, pp. 43–52, Sep. 2021, doi: 10.25046/aj060506.
RÜEGER, Christoph, Jean DOBROWOLSKI, Felix Rafael SEGUNDO SEVILLA und Petr KORBA, 2021. Analysis of grid events influenced by different levels of renewable integration on extra-large power systems. Advances in Science, Technology and Engineering Systems Journal. 10 September 2021. Bd. 6, Nr. 5, S. 43–52. DOI 10.25046/aj060506
Rüeger, Christoph, Jean Dobrowolski, Felix Rafael Segundo Sevilla, and Petr Korba. 2021. “Analysis of Grid Events Influenced by Different Levels of Renewable Integration on Extra-Large Power Systems.” Advances in Science, Technology and Engineering Systems Journal 6 (5): 43–52. https://doi.org/10.25046/aj060506.
Rüeger, Christoph, et al. “Analysis of Grid Events Influenced by Different Levels of Renewable Integration on Extra-Large Power Systems.” Advances in Science, Technology and Engineering Systems Journal, vol. 6, no. 5, Sept. 2021, pp. 43–52, https://doi.org/10.25046/aj060506.


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