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  Ambient forcing: sampling local perturbations in constrained phase spaces

Büttner, A., Kurths, J., Hellmann, F. (2022): Ambient forcing: sampling local perturbations in constrained phase spaces. - New Journal of Physics, 24, 053019.
https://doi.org/10.1088/1367-2630/ac6822

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 Urheber:
Büttner, Anna1, Autor              
Kurths, Jürgen1, Autor              
Hellmann, Frank1, Autor              
Affiliations:
1Potsdam Institute for Climate Impact Research, Potsdam, ou_persistent13              

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Schlagwörter: differential-algebraic equations, voltage dynamics, basin stability, power grids, coupled oscillator networks, survivability
 Zusammenfassung: Ambient Forcing is a novel method to sample random states from manifolds of differential-algebraic equations (DAE). These states can represent local perturbations of nodes in power systems with loads, which introduces constraints into the system. These states must be valid initial conditions to the DAE, meaning that they fulfill the algebraic equations. Additionally, these states should represent perturbations of individual variables in the power grid, such as a perturbation of the voltage at a load. These initial states enable the calculation of probabilistic stability measures of power systems with loads, which was not yet possible, but is important as these measures have become a crucial tool in studying power systems. To verify that these perturbations are network local, i.e. that the initial perturbation only targets a single node in the power grid, a new measure, the spreadability, related to the closeness centrality [1], is presented. The spreadability is evaluated for an ensemble of typical power grids. The ensemble depicts a set of future power grids where consumers, as well as producers, are connected to the grid via inverters. For this power grid ensemble, we additionally calculate the basin stability [2] as well as the survivability [3], two probabilistic measures which provide statements about asymptotic and transient stability. We also revisit the topological classes, introduced in [4], that have been shown to predict the basin stability of grids and explore if they still hold for grids with constraints and voltage dynamics. We find that the degree of the nodes is a better predictor than the topological classes for our ensemble. Finally, ambient forcing is applied to calculate probabilistic stability measures of the IEEE 96 test case [5].

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Sprache(n): eng - Englisch
 Datum: 2022-04-012022-04-192022-05
 Publikationsstatus: Final veröffentlicht
 Seiten: 17
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: Expertenbegutachtung
 Identifikatoren: PIKDOMAIN: RD4 - Complexity Science
Organisational keyword: RD4 - Complexity Science
MDB-ID: No data to archive
Research topic keyword: Complex Networks
Research topic keyword: Energy
Research topic keyword: Nonlinear Dynamics
Model / method: Open Source Software
Working Group: Dynamics, stability and resilience of complex hybrid infrastructure networks
OATYPE: Gold Open Access
DOI: 10.1088/1367-2630/ac6822
 Art des Abschluß: -

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Projektname : Gefördert im Rahmen des Förderprogramms "Open Access Publikationskosten" durch die Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 491075472.
Grant ID : -
Förderprogramm : Open-Access-Publikationskosten (491075472)
Förderorganisation : Deutsche Forschungsgemeinschaft (DFG)

Quelle 1

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Titel: New Journal of Physics
Genre der Quelle: Zeitschrift, SCI, Scopus, p3, oa
 Urheber:
Affiliations:
Ort, Verlag, Ausgabe: -
Seiten: - Band / Heft: 24 Artikelnummer: 053019 Start- / Endseite: - Identifikator: CoNE: https://publications.pik-potsdam.de/cone/journals/resource/1911272
Publisher: IOP Publishing