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  4. Stability assessment considering multi-timescale power system dynamics: Insights into Hopf bifurcations with GFL and GFM IBRs
 
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2027
Journal Article
Title

Stability assessment considering multi-timescale power system dynamics: Insights into Hopf bifurcations with GFL and GFM IBRs

Abstract
Real power systems exhibit dynamics that evolve across a wide range of timescales, from very fast to very slow phenomena. Historically, incorporating these wide-ranging dynamics into a single model has been impractical. As a result, power engineers rely on timescale decomposition to simplify models. When evaluating fast phenomena, slow dynamics are often neglected (assumed constant), and vice versa. This paper underscores the limitations of this traditional approach by demonstrating the importance of assessing power system stability while considering multiple timescales simultaneously. Using the concept of Hopf bifurcations, the study illustrates instability issues that would be missed if multi-timescale dynamics are not considered. Specifically, it exemplifies a class of instability that is overlooked when multi-timescale dynamics are decoupled, with a particular emphasis on networks featuring inverter-based resources.
Author(s)
Pabón Ospina, Luis David  orcid-logo
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Braun, Martin
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Chatterjee, Sushobhan
Johns Hopkins University Baltimore  
Geng, Sijia
Johns Hopkins University Baltimore  
Journal
Electric power systems research  
Project(s)
Assistenzsysteme für einen sicheren Betrieb von Verbundnetzen mit geringer Trägheit; Teilvorgaben: Innovative DSA-Anwendungen zur Stabilitäts- und Trägheitsbewertung in stromrichterdominierten, elektrischen Netzen  
Systemstabilität durch marktbasierte Systemdienstleistungen und technische Mindestanforderungen an zukünftige elektrische Anlagen; Teilvorhaben: Systembedarfe und Systemstudien zur transienten Stabilität  
Funder
Bundesministerium für Wirtschaft und Energie  
Bundesministerium für Wirtschaft und Energie  
Conference
Power Systems Computation Conference 2026  
Open Access
File(s)
Download (11.97 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1016/j.epsr.2026.113598
10.24406/publica-9301
Language
English
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Keyword(s)
  • Grid-following inverters

  • Grid-forming inverters

  • Hopf bifurcation

  • Inverter-based resources

  • Inverter oscillations

  • Multi-timescale dynamics

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