Synchronization dynamics of phase oscillators on power grid models

Fuente: arXiv
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Main Authors: Potratzki, Max, Bröhl, Timo, Rings, Thorsten, Lehnertz, Klaus
Format: Preprint
Published: 2024
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author Potratzki, Max
Bröhl, Timo
Rings, Thorsten
Lehnertz, Klaus
author_facet Potratzki, Max
Bröhl, Timo
Rings, Thorsten
Lehnertz, Klaus
contents We investigate topological and spectral properties of models of European and US-American power grids and of paradigmatic network models as well as their implications for the synchronization dynamics of phase oscillators with heterogeneous natural frequencies. We employ the complex-valued order parameter --~a widely-used indicator for phase ordering~-- to assess the synchronization dynamics and observe the order parameter to exhibit either constant or periodic or non-periodic, possibly chaotic temporal evolutions for a given coupling strength but depending on initial conditions and the systems' disorder. Interestingly, both topological and spectral characteristics of the power grids point to a diminished capability of these networks to support a temporarily stable synchronization dynamics. We find non-trivial commonalities between the synchronization dynamics of oscillators on seemingly opposing topologies.
format Preprint
id arxiv_https___arxiv_org_abs_2403_18867
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Synchronization dynamics of phase oscillators on power grid models
Potratzki, Max
Bröhl, Timo
Rings, Thorsten
Lehnertz, Klaus
Physics and Society
Chaotic Dynamics
We investigate topological and spectral properties of models of European and US-American power grids and of paradigmatic network models as well as their implications for the synchronization dynamics of phase oscillators with heterogeneous natural frequencies. We employ the complex-valued order parameter --~a widely-used indicator for phase ordering~-- to assess the synchronization dynamics and observe the order parameter to exhibit either constant or periodic or non-periodic, possibly chaotic temporal evolutions for a given coupling strength but depending on initial conditions and the systems' disorder. Interestingly, both topological and spectral characteristics of the power grids point to a diminished capability of these networks to support a temporarily stable synchronization dynamics. We find non-trivial commonalities between the synchronization dynamics of oscillators on seemingly opposing topologies.
title Synchronization dynamics of phase oscillators on power grid models
topic Physics and Society
Chaotic Dynamics
url https://arxiv.org/abs/2403.18867