Bulk multi-energy grids and smart distribution automation
SCCER-FURIES PHASE II
Beschreibung
Within the second phase, SCCER-FURIES aims to address the research questions resulting from the first phase and provide distribution system operators with planning and operation tools to integrate 4.4. TWh of non-dispatchable energy resources into their grid, and at the same time to provide the transmission system operator with tools for better integrated control of the two grid layers, which is aligned to the “Energy Strategy 2050” goals. This project, on which the IEFE team from ZHAW is part of it, is lead by the distributed electrical systems laboratory of EPFL and involves the collaboration of different partners from the ETHZ domain, cantonal universities and other universities of applied science in Switzerland as well as industrial partners such as: Swissgrid, Axpo, BKB, NEPLAN, ABB, Alpiq and SwissGas.
Eckdaten
Projektleitung
Projektteam
Daniel Baltensperger, Christoph Rüeger, Micha Weisshaupt
Projektpartner
Swissgrid AG; ABB Schweiz AG; Eidgenössische Technische Hochschule Zürich ETH; Ecole polytechnique fédérale de Lausanne EPFL
Projektstatus
abgeschlossen, 01/2017 - 12/2020
Institut/Zentrum
Institut für Energiesysteme und Fluid-Engineering (IEFE)
Drittmittelgeber
KTI; SNF; Bund; Dritte
Projektvolumen
800'000 CHF
Weiterführende Dokumente und Links
Publikationen
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Analysis of grid events influenced by different levels of renewable integration on extra-large power systems
2021 Rüeger, Christoph; Dobrowolski, Jean; Segundo Sevilla, Felix Rafael; Korba, Petr
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A study on the frequency dynamics of the ENTSO-E grid with increasing share of renewable generation
2021 Ramirez Gonzalez, Miguel; Segundo Sevilla, Felix Rafael; Korba, Petr
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Stability effects after massive integration of renewable energy sources on extra-large power systems
2020 Rüeger, Christoph; Dobrowolski, Jean; Korba, Petr; Segundo Sevilla, Felix Rafael
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Investigation of local voltage control solutions for the integration of renewable power sources into the low-voltage networks
2020 Obusevs, Artjoms; Carigiet, Fabian; Baumgartner, Franz; Korba, Petr
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Advanced laboratory testing methods using real-time simulation and hardware-in-the-loop techniques : a survey of smart grid international research facility network activities
2020 Montoya, Juan; Brandl, Ron; Vishwanath, Keerthi; Johnson, Jay; Darbali-Zamora, Rachid; Summers, Adam; Hashimoto, Jun; Kikusato, Hiroshi; Ustun, Taha Selim; Ninad, Nayeem; Apablaza-Arancibia, Estefan; Bérard, Jean-Philippe; Rivard, Maxime; Ali, Syed Qaseem; Obusevs, Artjoms; Heussen, Kai; Stanev, Rad; Guillo-Sansano, Efren; Syed, Mazheruddin H.; Burt, Graeme; Cho, Changhee; Yoo, Hyeong-Jun; Awasthi, Chandra Prakash; Wadhwa, Kumud; Bründlinger, Roland
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Investigation of harmonic issues in distribution grids due to high share of electric vehicles
2020 Di Domenico, Diego; Obusevs, Artjoms; Korba, Petr
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Scaling version of Kundur’s two-areas system for electromechanical oscillations representation
2020 Baltensperger, Daniel; Dobrowolski, Jean; Obusevs, Artjoms; Segundo Sevilla, Felix Rafael; Korba, Petr
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Lyapunov exponent for evaluation and ranking of the severity of grid events on extra-large power systems
2019 Rüeger, Christoph; Dobrowolski, Jean; Korba, Petr; Segundo Sevilla, Felix Rafael
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Implementation of quasi-static time series simulations for analysis of the impact of electric vehicles on the grid
2019 Allenspach, Cyril Armand; Hogger, Reto; Obusevs, Artjoms; Korba, Petr; Reist, Helen
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Techno-economic analysis of battery storage and curtailment in a distribution grid with high PV penetration
2018 Segundo Sevilla, Felix Rafael; Parra, David; Wyrsch, Nicolas; Patel, Martin K.; Kienzle, Florian; Korba, Petr
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Contingency ranking for dynamic security analysis using a trigonometric based index
2018 Segundo Sevilla, Felix Rafael; Korba, Petr; Barocio, Emilio