In this paper, we study the synchronization of fractional–order discrete–time chaotic systems by means of two scaling matrices Θ and Φ. The considered synchronization scheme can be tailored to encompass several types of classical synchronization types. We proposed two nonlinear control strategies for the Θ–Φ synchronization of an m–dimensional drive system and an n–dimensional response system, whereby the synchronization dimension d = m and d = n, respectively. Numerical examples are presented to test the findings of the study
A robust control approach is presented to study the problem of Q-S synchronization between Integer-o...
Abstract In this paper, we introduce two approaches to the generalized synchronized synchronization ...
International audienceThe chaotic dynamics of fractional-order systems has attracted much attention ...
In this paper, we propose two control strategies for the Q–S synchronization of fractional-order dis...
Abstract By constructing two scaling matrices, i.e., a function matrix Λ ( t ) $\Lambda (t)$ and a c...
<p>In this paper, new types of synchronization and inverse synchro-nization are proposed for some di...
This paper is concerned with the co-existence of different synchronization types for fractional-orde...
This paper investigates the F – M synchronization between non-identical fractional-o...
In this paper, the dual combination–combination hybrid synchronization (DCCHS) scheme has been inves...
Based on two fractional-order chaotic complex drive systems and one fractional-order chaotic complex...
By combining the tracking control and the stability theory of nonlinear fractional-order systems, a ...
International audienceFunction projective lag synchronization of different structural fractional-ord...
In this paper, a new type of synchronization for chaotic (hyperchaotic) maps with different dimensio...
By using a linear feedback control technique, we propose a chaos synchronization scheme for nonlinea...
The chaotic dynamics of fractional-order systems has attracted much attention recently. Chaotic sync...
A robust control approach is presented to study the problem of Q-S synchronization between Integer-o...
Abstract In this paper, we introduce two approaches to the generalized synchronized synchronization ...
International audienceThe chaotic dynamics of fractional-order systems has attracted much attention ...
In this paper, we propose two control strategies for the Q–S synchronization of fractional-order dis...
Abstract By constructing two scaling matrices, i.e., a function matrix Λ ( t ) $\Lambda (t)$ and a c...
<p>In this paper, new types of synchronization and inverse synchro-nization are proposed for some di...
This paper is concerned with the co-existence of different synchronization types for fractional-orde...
This paper investigates the F – M synchronization between non-identical fractional-o...
In this paper, the dual combination–combination hybrid synchronization (DCCHS) scheme has been inves...
Based on two fractional-order chaotic complex drive systems and one fractional-order chaotic complex...
By combining the tracking control and the stability theory of nonlinear fractional-order systems, a ...
International audienceFunction projective lag synchronization of different structural fractional-ord...
In this paper, a new type of synchronization for chaotic (hyperchaotic) maps with different dimensio...
By using a linear feedback control technique, we propose a chaos synchronization scheme for nonlinea...
The chaotic dynamics of fractional-order systems has attracted much attention recently. Chaotic sync...
A robust control approach is presented to study the problem of Q-S synchronization between Integer-o...
Abstract In this paper, we introduce two approaches to the generalized synchronized synchronization ...
International audienceThe chaotic dynamics of fractional-order systems has attracted much attention ...