A subclass of dynamical systems with a time rate of change of acceleration are called Newtonian jerky dynamics. Some mechanical and acoustic systems can be interpreted as jerky dynamics. In this paper we show that the jerk dynamics are naturally obtained for electrical circuits using the fractional calculus approach with order γ. We consider fractional LC and RL electrical circuits with 1⩽γ<2 for different source terms. The LC circuit has a frequency ω dependent on the order of the fractional differential equation γ, since it is defined as ω(γ)=ω0γγ1-γ, where ω0 is the fundamental frequency. For γ=3/2, the system is described by a third-order differential equation with frequency ω~ω03/2, and assuming γ=2 the dynamics are described by a four...
A look into Fractional Calculus and their applications from the Signal Processing point of view is d...
A number of critical remarks related to the application of fractional derivatives in electrical circ...
In this article, fractional linear electrical systems are investigated. Analytical solutions of the ...
Simple dynamical systems are of interest always. In this paper, we propose a simple jerk system with...
AbstractIn this paper we propose a fractional differential equation for the electrical RC and LC cir...
The Maxwell equations play a fundamental role in the well established formulation of the electromagn...
<p></p><p>Abstract A natural extension of differential calculus, initially proposed by l'Hôpital in ...
This paper illustrates a class of mechanical systems exhibiting a damping mechanism based on fractio...
We presented the model of resistance, inductance, capacitance circuit using a novel derivative with ...
WOS: 000349736600006In this paper, charging and discharging processes of different capacitors in ele...
Fractional-order derivatives appear in various engineering applications including models for viscoel...
In recent years, fractional-order differential operators, and the dynamic models constructed based o...
In the current study, the theory of fractional calculus is applied to the electric parallel RLC circ...
Abstract This paper presents a novel modeling technique for a VTOL electromechanical nonlinear dyna...
WOS: 000382511800005In this paper, the charge variation in time has been investigated in electrical ...
A look into Fractional Calculus and their applications from the Signal Processing point of view is d...
A number of critical remarks related to the application of fractional derivatives in electrical circ...
In this article, fractional linear electrical systems are investigated. Analytical solutions of the ...
Simple dynamical systems are of interest always. In this paper, we propose a simple jerk system with...
AbstractIn this paper we propose a fractional differential equation for the electrical RC and LC cir...
The Maxwell equations play a fundamental role in the well established formulation of the electromagn...
<p></p><p>Abstract A natural extension of differential calculus, initially proposed by l'Hôpital in ...
This paper illustrates a class of mechanical systems exhibiting a damping mechanism based on fractio...
We presented the model of resistance, inductance, capacitance circuit using a novel derivative with ...
WOS: 000349736600006In this paper, charging and discharging processes of different capacitors in ele...
Fractional-order derivatives appear in various engineering applications including models for viscoel...
In recent years, fractional-order differential operators, and the dynamic models constructed based o...
In the current study, the theory of fractional calculus is applied to the electric parallel RLC circ...
Abstract This paper presents a novel modeling technique for a VTOL electromechanical nonlinear dyna...
WOS: 000382511800005In this paper, the charge variation in time has been investigated in electrical ...
A look into Fractional Calculus and their applications from the Signal Processing point of view is d...
A number of critical remarks related to the application of fractional derivatives in electrical circ...
In this article, fractional linear electrical systems are investigated. Analytical solutions of the ...