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The Co-existence of Different Synchronization Types in Fractional-order Discrete-time Chaotic Systems with Non–identical Dimensions and Orders
by
Khennaoui, Amina-Aicha
, Grassi, Giuseppe
, Wang, Xiong
, Huynh, Van Van
, Ouannas, Adel
, Pham, Viet-Thanh
, Bendoukha, Samir
in
Chaos theory
/ Discrete time systems
/ Engineering
/ entropy
/ fractional discrete chaos
/ full state hybrid projective synchronization
/ generalized synchronization
/ inverse full state hybrid projective synchronization
/ inverse generalized synchronization
/ Nonlinear control
/ Parameter estimation
/ projective synchronization
/ Studies
/ Time synchronization
2018
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The Co-existence of Different Synchronization Types in Fractional-order Discrete-time Chaotic Systems with Non–identical Dimensions and Orders
by
Khennaoui, Amina-Aicha
, Grassi, Giuseppe
, Wang, Xiong
, Huynh, Van Van
, Ouannas, Adel
, Pham, Viet-Thanh
, Bendoukha, Samir
in
Chaos theory
/ Discrete time systems
/ Engineering
/ entropy
/ fractional discrete chaos
/ full state hybrid projective synchronization
/ generalized synchronization
/ inverse full state hybrid projective synchronization
/ inverse generalized synchronization
/ Nonlinear control
/ Parameter estimation
/ projective synchronization
/ Studies
/ Time synchronization
2018
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The Co-existence of Different Synchronization Types in Fractional-order Discrete-time Chaotic Systems with Non–identical Dimensions and Orders
by
Khennaoui, Amina-Aicha
, Grassi, Giuseppe
, Wang, Xiong
, Huynh, Van Van
, Ouannas, Adel
, Pham, Viet-Thanh
, Bendoukha, Samir
in
Chaos theory
/ Discrete time systems
/ Engineering
/ entropy
/ fractional discrete chaos
/ full state hybrid projective synchronization
/ generalized synchronization
/ inverse full state hybrid projective synchronization
/ inverse generalized synchronization
/ Nonlinear control
/ Parameter estimation
/ projective synchronization
/ Studies
/ Time synchronization
2018
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The Co-existence of Different Synchronization Types in Fractional-order Discrete-time Chaotic Systems with Non–identical Dimensions and Orders
Journal Article
The Co-existence of Different Synchronization Types in Fractional-order Discrete-time Chaotic Systems with Non–identical Dimensions and Orders
2018
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Overview
This paper is concerned with the co-existence of different synchronization types for fractional-order discrete-time chaotic systems with different dimensions. In particular, we show that through appropriate nonlinear control, projective synchronization (PS), full state hybrid projective synchronization (FSHPS), and generalized synchronization (GS) can be achieved simultaneously. A second nonlinear control scheme is developed whereby inverse full state hybrid projective synchronization (IFSHPS) and inverse generalized synchronization (IGS) are shown to co-exist. Numerical examples are presented to confirm the findings.
Publisher
MDPI AG,MDPI
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