A new method is presented for approximating the stationary probability density function of the response of a general class of non-linear single-degree-of-freedom dynamical systems subjected to additive stochastic white noise excitation. The method is based on finding the best probability density function (PDF) from a parameterized class of trial non-Gaussian PDFs by minimizing a weighted norm of the Fokker–Planck–Kolmogorov equation error. The proposed procedure yields simple expressions in terms of one-dimensional integrals for determining desired probabilistic characteristics of the system response, such as moments and mean outcrossing rates. Examples illustrating the applicability and accuracy of the method include a system modeling the ...
The paper deals with the analysis of stochastic mechanical systems with one degree of freedom and pr...
First examined is the problem of obtaining the nonstationary stochastic response of a nonlinear syst...
AbstractThe development of numerical solution schemes for stochastic oscillators under additive and/...
A new method is presented for approximating the stationary probability density function of the respo...
AbstractThe development of numerical solution schemes for stochastic oscillators under additive and/...
The nonstationary random response of a class of lightly damped nonlinear oscillators subjected to Ga...
The nonstationary random response of a class of lightly damped nonlinear oscillators subjected to Ga...
The nonstationary random response of a class of lightly damped nonlinear oscillators subjected to Ga...
The aim of this paper is to present a thorough investigation of approximate techniques for estimatin...
The aim of this paper is to present a thorough investigation of approximate techniques for estimatin...
The use of the Advanced Censored Closure (ACC) technique, recently proposed by the authors for pred...
First examined is the problem of obtaining the nonstationary stochastic response of a nonlinear syst...
The response of a dynamical system modelled by differential equations with white noise as the forcin...
The paper deals with the analysis of stochastic mechanical systems with one degree of freedom and pr...
The paper deals with the analysis of stochastic mechanical systems with one degree of freedom and pr...
The paper deals with the analysis of stochastic mechanical systems with one degree of freedom and pr...
First examined is the problem of obtaining the nonstationary stochastic response of a nonlinear syst...
AbstractThe development of numerical solution schemes for stochastic oscillators under additive and/...
A new method is presented for approximating the stationary probability density function of the respo...
AbstractThe development of numerical solution schemes for stochastic oscillators under additive and/...
The nonstationary random response of a class of lightly damped nonlinear oscillators subjected to Ga...
The nonstationary random response of a class of lightly damped nonlinear oscillators subjected to Ga...
The nonstationary random response of a class of lightly damped nonlinear oscillators subjected to Ga...
The aim of this paper is to present a thorough investigation of approximate techniques for estimatin...
The aim of this paper is to present a thorough investigation of approximate techniques for estimatin...
The use of the Advanced Censored Closure (ACC) technique, recently proposed by the authors for pred...
First examined is the problem of obtaining the nonstationary stochastic response of a nonlinear syst...
The response of a dynamical system modelled by differential equations with white noise as the forcin...
The paper deals with the analysis of stochastic mechanical systems with one degree of freedom and pr...
The paper deals with the analysis of stochastic mechanical systems with one degree of freedom and pr...
The paper deals with the analysis of stochastic mechanical systems with one degree of freedom and pr...
First examined is the problem of obtaining the nonstationary stochastic response of a nonlinear syst...
AbstractThe development of numerical solution schemes for stochastic oscillators under additive and/...