In this paper, an integer- and fractional-order form of a four-dimensional (4-D) chaotic system with hidden attractors is investigated using theoretical/numerical and analogue methods. The system is constructed not through the extension of a three-dimensional existing nonlinear system as in current approaches, but by modifying the well-known two-dimensional Lotka-Volterra system. The equilibrium point of the integer-order system is determined and its stability analysis is studied using Routh-Hurwitz criterion. When the selected bifurcation parameter is varied, the system exhibits various dynamical behaviors and features including intermittency route to chaos, chaotic bursting oscillations and offset boosting. Moreover, the fractional-order ...
Some endeavors have been recently dedicated to explore the dynamic properties of the fractional-orde...
In this paper, a new function is introduced to generate various multi-double-scroll and multi-double...
Memristor is the fourth basic electronic element discovered in addition to resistor, capacitor, and ...
Abstract: Integer orders differential system is a special case of fractional-order differential syst...
A novel nonlinear four-dimensional hyperchaotic system and its fractional-order form are presented. ...
Abstract: In this paper, a fractional 3-dimensional (3-D) 4-wing quadratic autonomous system (Qi sys...
In this work, a new fractional-order chaotic system with a single parameter and four nonlinearities ...
Memristor and fractional-order derivatives are feasible options for constructing new systems with co...
This article presents a novel four-dimensional autonomous fractional-order chaotic system (FOCS) wit...
The operation of memristive, meminductive and memcapacitive circuit components depend on their histo...
Four-dimensional chaotic systems are a very interesting topic for researchers, given their special f...
The study of hidden attractors plays a very important role in the engineering applications of nonlin...
Designing and analyzing new nonlinear dynamic systems have gotten much interest and effort among sci...
Fractional calculus has always been regarded as an ideal mathematical tool to describe the memory of...
This paper presents an interesting four-dimensional chaotic system with different equilibria and att...
Some endeavors have been recently dedicated to explore the dynamic properties of the fractional-orde...
In this paper, a new function is introduced to generate various multi-double-scroll and multi-double...
Memristor is the fourth basic electronic element discovered in addition to resistor, capacitor, and ...
Abstract: Integer orders differential system is a special case of fractional-order differential syst...
A novel nonlinear four-dimensional hyperchaotic system and its fractional-order form are presented. ...
Abstract: In this paper, a fractional 3-dimensional (3-D) 4-wing quadratic autonomous system (Qi sys...
In this work, a new fractional-order chaotic system with a single parameter and four nonlinearities ...
Memristor and fractional-order derivatives are feasible options for constructing new systems with co...
This article presents a novel four-dimensional autonomous fractional-order chaotic system (FOCS) wit...
The operation of memristive, meminductive and memcapacitive circuit components depend on their histo...
Four-dimensional chaotic systems are a very interesting topic for researchers, given their special f...
The study of hidden attractors plays a very important role in the engineering applications of nonlin...
Designing and analyzing new nonlinear dynamic systems have gotten much interest and effort among sci...
Fractional calculus has always been regarded as an ideal mathematical tool to describe the memory of...
This paper presents an interesting four-dimensional chaotic system with different equilibria and att...
Some endeavors have been recently dedicated to explore the dynamic properties of the fractional-orde...
In this paper, a new function is introduced to generate various multi-double-scroll and multi-double...
Memristor is the fourth basic electronic element discovered in addition to resistor, capacitor, and ...