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Related Experiment Video

Updated: Dec 16, 2025

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Oscillating synchronization in delayed oscillators with time-varying time delay coupling: Experimental observation.

Biswajit Karmakar1, Debabrata Biswas2, Tanmoy Banerjee1

  • 1Chaos and Complex Systems Research Laboratory, Department of Physics, University of Burdwan, Burdwan 713 104, West Bengal, India.

Chaos (Woodbury, N.Y.)
|July 3, 2020
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Summary

Researchers experimentally observed oscillating synchronization in coupled nonlinear oscillators with time-varying delays. This phenomenon, exclusive to time-varying delay systems, oscillates between lag, complete, and anticipatory synchronization.

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Area of Science:

  • Nonlinear dynamics
  • Complex systems
  • Synchronization phenomena

Background:

  • Time-varying time-delayed (TVTD) systems exhibit complex dynamics and synchronization behaviors not seen in constant or no-delay systems.
  • Oscillating synchronization, a unique scenario for TVTD systems, was previously theoretical but lacked experimental validation.

Purpose of the Study:

  • To provide the first experimental observation of oscillating synchronization in coupled nonlinear time-delayed oscillators.
  • To demonstrate the feasibility of inducing oscillating synchronization via a time-varying time delay in the coupling path.

Main Methods:

  • Implementation of a novel electronic circuit to generate and control time-varying time delays.
  • Experimental setup involving coupled nonlinear oscillators with a dynamically altered coupling delay.

Main Results:

  • Successful experimental realization of oscillating synchronization.
  • Demonstration that the synchronization state oscillates between lag, complete, and anticipatory synchronization based on the instantaneous delay variation.
  • Validation of oscillating synchronization as an experimentally observable phenomenon in TVTD systems.

Conclusions:

  • The study confirms oscillating synchronization as an experimentally observable phenomenon in coupled nonlinear time-delayed oscillators.
  • The findings suggest potential applications of oscillating synchronization in engineering systems.
  • This work bridges the gap between theoretical predictions and experimental evidence for complex dynamics in TVTD systems.