Abstract

An approach to synchronize spatiotemporal chaos is proposed. It is achieved by introducing a finite flat region in the local map. By using this scheme, a number of orbits in both the drive and the response subsystems are forced to pass through a fixed point in every dimension. With only an arbitrary phase space variable as drive signal, synchronization of spatiotemporal chaos can be achieved rapidly in the response subsystem. This is an advantage when compared with other synchronization methods that require a linear combination of the original phase space variables.

Highlights

  • An approach to synchronize spatiotemporal chaos is proposed

  • With only an arbitrary phase space variable as drive signal, synchronization of spatiotemporal chaos can be achieved rapidly in the response subsystem. This is an advantage when compared with other synchronization methods that require a linear combination of the original phase space variables

  • It has been shown that it is possible to synchronize chaos with a high-dimensional hyperchaotic coupled map lattice using a single scalar variable that is a linear combination of the original phase space variables [16, 17]

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Summary

Introduction

It is achieved by introducing a finite flat region in the local map. A number of orbits in both the drive and the response subsystems are forced to pass through a fixed point in every dimension. With only an arbitrary phase space variable as drive signal, synchronization of spatiotemporal chaos can be achieved rapidly in the response subsystem.

Results
Conclusion

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