Modeling approaches are presented for detecting an anomalous route to phase synchronization from time series of two interacting nonlinear oscillators. The anomalous transition is characterized by an enlargement of the mean frequency difference between the oscillators with an initial increase in the coupling strength. Although such a structure is common in a large class of coupled nonisochronous oscillators, prediction of the anomalous transition is nontrivial for experimental systems, whose dynamical properties are unknown. Two approaches are examined; one is a phase equational modeling of coupled limit cycle oscillators and the other is a nonlinear predictive modeling of coupled chaotic oscillators. Application to prototypical models such as two interacting predator-prey systems in both limit cycle and chaotic regimes demonstrates the capability of detecting the anomalous structure from only a few sets of time series. Experimental data from two coupled Chua circuits shows its applicability to real experimental system.
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June 2008
Research Article|
June 30 2008
Detecting anomalous phase synchronization from time series
Isao T. Tokuda;
Isao T. Tokuda
1
School of Information Science
, Japan Advanced Institute of Science and Technology, Ishikawa 923-1292, Japan
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Syamal Kumar Dana;
Syamal Kumar Dana
2Instrument Division,
India Institute of Chemical Biology
, Jadavpur, Kolkata 700032, India
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Jürgen Kurths
Jürgen Kurths
3Department of Physics,
Humboldt University Berlin
, 12489 Berlin, Germany
and Potsdam Institute for Climate Impact Research
, 14473 Potsdam, Gernany
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Chaos 18, 023134 (2008)
Article history
Received:
December 07 2007
Accepted:
May 22 2008
Citation
Isao T. Tokuda, Syamal Kumar Dana, Jürgen Kurths; Detecting anomalous phase synchronization from time series. Chaos 1 June 2008; 18 (2): 023134. https://doi.org/10.1063/1.2943308
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