Synchronization of Chaotic Optoelectronic Oscillators: Adaptive Techniques and the Design of Optimal Networks
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Summary
It is found that the convergence rate is maximized for certain network configurations, called optimal networks, which are identified based on the eigenvalues of the coupling matrix, and a classification system is introduced that categorizes networks according to their sensitivity to coupling perturbations as sensitive and nonsensitive configurations.
- Type
- dissertation
- Published
- 2011-01-01
- Cited by
- 7
- References
- 81
- Access
- Open access
- OpenAlex
- https://openalex.org/W67697649
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9216654
Keywords
Synchronization (alternating current), Chaotic, Computer science, Synchronization networks, Chaotic systems
References
- Linear System Theory
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- Applied Delay Differential Equations
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- Spectra of Graphs: Theory and Applications
- Optical communication with chaotic waveforms
- Weighted networks are more synchronizable: how and why
- Oscillations and chaos in chemical systems
- Chaos-based communications at high bit rates using commercial fibre-optic links
- Chaos in electronic circuits
- Experimental synchronization of chaotic lasers.
- The size of the sync basin.
- Master stability functions for coupled nearly identical dynamical systems
- Untangling the Interplay between Epidemic Spread and Transmission Network Dynamics
- Stability Theory of Synchronized Motion in Coupled-Oscillator Systems. III Mapping Model for Continuous System
- Synchronization transitions in a disordered Josephson series array.
Cited by
- Synchronization and prediction of chaotic dynamics on networks of optoelectronic oscillators
- Complex dynamics of a microwave time-delayed feedback loop
- Experimental study of entropy generation and synchronization in networks of coupled dynamical systems
- Group Synchrony in an Experimental System of Delay-coupled Optoelectronic Oscillators
- Modeling of synchronization in quantum dot semiconductor lasers
- OPTOELECTRONIC EXPERIMENTS ON RANDOM BIT GENERATORS AND COUPLED DYNAMICAL SYSTEMS
- Experiments on networks of coupled opto-electronic oscillators and physical random number generators
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