Lag projective synchronization in fractional-order chaotic (hyperchaotic) systems
In this Letter, a new lag projective synchronization for fractional-order chaotic (hyperchaotic) systems is proposed, which includes complete synchronization, anti-synchronization, lag synchronization, generalized projective synchronization. It is shown that the slave system synchronizes the past st...
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Veröffentlicht in: | Physics letters. A 2011-05, Vol.375 (21), p.2099-2110 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this Letter, a new lag projective synchronization for fractional-order chaotic (hyperchaotic) systems is proposed, which includes complete synchronization, anti-synchronization, lag synchronization, generalized projective synchronization. It is shown that the slave system synchronizes the past state of the driver up to a scaling factor. A suitable controller for achieving the lag projective synchronization is designed based on the stability theory of linear fractional-order systems and the pole placement technique. Two examples are given to illustrate effectiveness of the scheme, in which the lag projective synchronizations between fractional-order chaotic Rössler system and fractional-order chaotic Lü system, between fractional-order hyperchaotic Lorenz system and fractional-order hyperchaotic Chen system, respectively, are successfully achieved. Corresponding numerical simulations are also given to verify the analytical results.
► A new lag projective synchronization for fractional-order systems is discussed. ► A suitable controller for lag projective synchronization is designed. ► Two groups of examples demonstrate the effectiveness of the proposed results. |
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ISSN: | 0375-9601 1873-2429 |
DOI: | 10.1016/j.physleta.2011.04.015 |