Fractional power-law nonlinear drift arises in many applications of engineering interest, as in structures with nonlinear fluid viscous\u2013elastic dampers. The probabilistic characterization of such structures under external Gaussian white noise excitation is still an open problem. This paper addresses the solution of such a nonlinear system providing the equation governing the evolution of the characteristic function, which involves the Riesz fractional operator. An efficient numerical procedure to handle the problem is also proposed
Fractional Dynamics and Control provides a comprehensive overview of recent advances in the areas of...
In this paper, fractional calculus has been used to find the spectral counterpart of the Fokker- Pl...
The article deals with the problem of computing efficiently the nonlinear response of a rod involvin...
Fractional power-law nonlinear drift arises in many applications of engineering interest, as in stru...
Fractional power-law nonlinear drift arises in many applications of engineering interest, as in stru...
Fluid viscoelastic dampers are of great interest in different fields of engineering. Examples of the...
Fractional-order derivatives appear in various engineering applications including models for viscoel...
A method is presented to compute the non-stationary response of single-degree-of-freedom structural ...
This paper aims at introducing the governing equation of motion of a continuous fractionally damped ...
In this paper, the Galerkin method is presented to estimate the approximate stationary and non-stati...
The goal of this paper is to establish a general framework for dynamic behaviors of coupled fraction...
In this paper an original method is presented to compute the stochastic response of singledegree- of...
This manuscript summarizes my main research activity in this last triennium. It adheres to a common ...
A novel approximate approach is developed for determining, in a computationally efficient manner, th...
The notion of fractional dynamics is related to equations of motion with one or a few terms with der...
Fractional Dynamics and Control provides a comprehensive overview of recent advances in the areas of...
In this paper, fractional calculus has been used to find the spectral counterpart of the Fokker- Pl...
The article deals with the problem of computing efficiently the nonlinear response of a rod involvin...
Fractional power-law nonlinear drift arises in many applications of engineering interest, as in stru...
Fractional power-law nonlinear drift arises in many applications of engineering interest, as in stru...
Fluid viscoelastic dampers are of great interest in different fields of engineering. Examples of the...
Fractional-order derivatives appear in various engineering applications including models for viscoel...
A method is presented to compute the non-stationary response of single-degree-of-freedom structural ...
This paper aims at introducing the governing equation of motion of a continuous fractionally damped ...
In this paper, the Galerkin method is presented to estimate the approximate stationary and non-stati...
The goal of this paper is to establish a general framework for dynamic behaviors of coupled fraction...
In this paper an original method is presented to compute the stochastic response of singledegree- of...
This manuscript summarizes my main research activity in this last triennium. It adheres to a common ...
A novel approximate approach is developed for determining, in a computationally efficient manner, th...
The notion of fractional dynamics is related to equations of motion with one or a few terms with der...
Fractional Dynamics and Control provides a comprehensive overview of recent advances in the areas of...
In this paper, fractional calculus has been used to find the spectral counterpart of the Fokker- Pl...
The article deals with the problem of computing efficiently the nonlinear response of a rod involvin...