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@ARTICLE{Zhang:872566,
author = {Zhang, Xiaozhu and Hallerberg, Sarah and Matthiae, Moritz
and Witthaut, Dirk and Timme, Marc},
title = {{F}luctuation-induced distributed resonances in oscillatory
networks},
journal = {Science advances},
volume = {5},
number = {7},
issn = {2375-2548},
address = {Washington, DC [u.a.]},
publisher = {Assoc.},
reportid = {FZJ-2020-00072},
pages = {eaav1027},
year = {2019},
abstract = {Across physics, biology, and engineering, the collective
dynamics of oscillatory networks often evolve into
self-organized operating states. How such networks respond
to external fluctuating signals fundamentally underlies
their function, yet is not well understood. Here, we present
a theory of dynamic network response patterns and reveal how
distributed resonance patterns emerge in oscillatory
networks once the dynamics of the oscillatory units become
more than one-dimensional. The network resonances are
topology specific and emerge at an intermediate frequency
content of the input signals, between global yet homogeneous
responses at low frequencies and localized responses at high
frequencies. Our analysis reveals why these patterns arise
and where in the network they are most prominent. These
results may thus provide general theoretical insights into
how fluctuating signals induce response patterns in
networked systems and simultaneously help to develop
practical guiding principles for real-world network design
and control.},
cin = {IEK-STE},
ddc = {500},
cid = {I:(DE-Juel1)IEK-STE-20101013},
pnm = {153 - Assessment of Energy Systems – Addressing Issues of
Energy Efficiency and Energy Security (POF3-153) /
VH-NG-1025 - Helmholtz Young Investigators Group
"Efficiency, Emergence and Economics of future supply
networks" $(VH-NG-1025_20112014)$},
pid = {G:(DE-HGF)POF3-153 / $G:(HGF)VH-NG-1025_20112014$},
typ = {PUB:(DE-HGF)16},
pubmed = {pmid:31392264},
UT = {WOS:000478770400013},
doi = {10.1126/sciadv.aav1027},
url = {https://juser.fz-juelich.de/record/872566},
}