This article presents a novel four-dimensional autonomous fractional-order chaotic system (FOCS) with multi-nonlinearity terms. Several dynamics, such as the chaotic attractors, equilibrium points, fractal dimension, Lyapunov exponent, and bifurcation diagrams of this new FOCS, are studied analytically and numerically. Adaptive control laws are derived based on Lyapunov theory to achieve chaos synchronization between two identical new FOCSs with an uncertain parameter. For these two identical FOCSs, one represents the master and the other is the slave. The uncertain parameter in the slave side was estimated corresponding to the equivalent master parameter. Next, this FOCS and its synchronization were realized by a feasible electronic circui...
In this paper, the dual combination–combination hybrid synchronization (DCCHS) scheme has been inves...
In this paper, a robust adaptive nonlinear feedback controller scheme is proposed to realize the syn...
Designing and analyzing new nonlinear dynamic systems have gotten much interest and effort among sci...
YesThis article presents a novel four-dimensional autonomous fractional-order chaotic system (FOCS) ...
In this study, a novel three dimensional autonomous chaotic attractor was found and secure communica...
This study investigates multiple synchronizations of distributed fractional-order chaotic systems. T...
This paper investigates the F – M synchronization between non-identical fractional-o...
This paper investigates the F – M synchronization between non-identical fractional-o...
Four-dimensional chaotic systems are a very interesting topic for researchers, given their special f...
This paper studies a fractional-order chaotic system with sine non-linearities and highlights its dy...
An integral-order hyperchaotic system with four-dimension is expanded to be a fractional-order syste...
This paper presents a method based on the state observer design for constructing a chaotically synch...
The book reports on the latest advances in and applications of fractional order control and synchron...
Exploring the dynamics feature of robust chaotic system is an attractive yet recent topic of interes...
Abstract—This paper presents a method based on the state observer design for constructing a chaotica...
In this paper, the dual combination–combination hybrid synchronization (DCCHS) scheme has been inves...
In this paper, a robust adaptive nonlinear feedback controller scheme is proposed to realize the syn...
Designing and analyzing new nonlinear dynamic systems have gotten much interest and effort among sci...
YesThis article presents a novel four-dimensional autonomous fractional-order chaotic system (FOCS) ...
In this study, a novel three dimensional autonomous chaotic attractor was found and secure communica...
This study investigates multiple synchronizations of distributed fractional-order chaotic systems. T...
This paper investigates the F – M synchronization between non-identical fractional-o...
This paper investigates the F – M synchronization between non-identical fractional-o...
Four-dimensional chaotic systems are a very interesting topic for researchers, given their special f...
This paper studies a fractional-order chaotic system with sine non-linearities and highlights its dy...
An integral-order hyperchaotic system with four-dimension is expanded to be a fractional-order syste...
This paper presents a method based on the state observer design for constructing a chaotically synch...
The book reports on the latest advances in and applications of fractional order control and synchron...
Exploring the dynamics feature of robust chaotic system is an attractive yet recent topic of interes...
Abstract—This paper presents a method based on the state observer design for constructing a chaotica...
In this paper, the dual combination–combination hybrid synchronization (DCCHS) scheme has been inves...
In this paper, a robust adaptive nonlinear feedback controller scheme is proposed to realize the syn...
Designing and analyzing new nonlinear dynamic systems have gotten much interest and effort among sci...