Please use this identifier to cite or link to this item: https://doi.org/10.21256/zhaw-26569
Publication type: Conference poster
Type of review: Peer review (abstract)
Title: Inter-area oscillation damping in a scaled version of the Kundur's two area power system
Authors: Kellermüller, Sandro
Obusevs, Artjoms
Ramirez Gonzalez, Miguel
Korba, Petr
et. al: No
DOI: 10.21256/zhaw-26569
Conference details: 9th International Conference, Integration of Renewable & Distributed Energy Resources (IRED), Adelaide, Australia, 24-26 October 2022
Issue Date: 24-Oct-2022
Publisher / Ed. Institution: IRED
Publisher / Ed. Institution: Adelaide
Language: English
Subjects: Oscillation damping; Power system; Dynamic hardware emulator
Subject (DDC): 621.3: Electrical, communications, control engineering
Abstract: The increasing deployment of new technologies to contribute to the decarbonization of power systems is imposing new challenges in terms of system dynamics and stability. To deal with different operating and control issues in this sense, and support actual needs, advanced tools and solutions are required. Therefore, this poster presents a two-stage approach to test and validate controller structures to damp inter-area oscillations, developed within the ISGAN SIRFN PST subtask: Stability of Low-inertia transmission interconnections.
URI: https://research.csiro.au/ired2022/wp-content/uploads/sites/477/2022/11/16-INTER-AREA-OSCILLATION-DAMPING-IN-A-SCALED-VERSION-OF-THE-KUNDURS-TWO-AREA-POWER-SYSTEM.pdf
https://digitalcollection.zhaw.ch/handle/11475/26569
Fulltext version: Published version
License (according to publishing contract): Licence according to publishing contract
Departement: School of Engineering
Organisational Unit: Institute of Energy Systems and Fluid Engineering (IEFE)
Published as part of the ZHAW project: Smart Grid International Research Facility Network (SIRFN)
Appears in collections:Publikationen School of Engineering

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Kellermüller, S., Obusevs, A., Ramirez Gonzalez, M., & Korba, P. (2022, October 24). Inter-area oscillation damping in a scaled version of the Kundur’s two area power system. 9th International Conference, Integration of Renewable & Distributed Energy Resources (IRED), Adelaide, Australia, 24-26 October 2022. https://doi.org/10.21256/zhaw-26569
Kellermüller, S. et al. (2022) ‘Inter-area oscillation damping in a scaled version of the Kundur’s two area power system’, in 9th International Conference, Integration of Renewable & Distributed Energy Resources (IRED), Adelaide, Australia, 24-26 October 2022. Adelaide: IRED. Available at: https://doi.org/10.21256/zhaw-26569.
S. Kellermüller, A. Obusevs, M. Ramirez Gonzalez, and P. Korba, “Inter-area oscillation damping in a scaled version of the Kundur’s two area power system,” in 9th International Conference, Integration of Renewable & Distributed Energy Resources (IRED), Adelaide, Australia, 24-26 October 2022, Oct. 2022. doi: 10.21256/zhaw-26569.
KELLERMÜLLER, Sandro, Artjoms OBUSEVS, Miguel RAMIREZ GONZALEZ und Petr KORBA, 2022. Inter-area oscillation damping in a scaled version of the Kundur’s two area power system. In: 9th International Conference, Integration of Renewable & Distributed Energy Resources (IRED), Adelaide, Australia, 24-26 October 2022 [online]. Conference poster. Adelaide: IRED. 24 Oktober 2022. Verfügbar unter: https://research.csiro.au/ired2022/wp-content/uploads/sites/477/2022/11/16-INTER-AREA-OSCILLATION-DAMPING-IN-A-SCALED-VERSION-OF-THE-KUNDURS-TWO-AREA-POWER-SYSTEM.pdf
Kellermüller, Sandro, Artjoms Obusevs, Miguel Ramirez Gonzalez, and Petr Korba. 2022. “Inter-Area Oscillation Damping in a Scaled Version of the Kundur’s Two Area Power System.” Conference poster. In 9th International Conference, Integration of Renewable & Distributed Energy Resources (IRED), Adelaide, Australia, 24-26 October 2022. Adelaide: IRED. https://doi.org/10.21256/zhaw-26569.
Kellermüller, Sandro, et al. “Inter-Area Oscillation Damping in a Scaled Version of the Kundur’s Two Area Power System.” 9th International Conference, Integration of Renewable & Distributed Energy Resources (IRED), Adelaide, Australia, 24-26 October 2022, IRED, 2022, https://doi.org/10.21256/zhaw-26569.


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