In this paper, a new method for the digital simulation of multivariate wind velocity fields by fractional spectral moments function is proposed. Firstly, a digital linear filter whose coefficients are fractional spectral moments of the system's transfer function is constructed. Then, it is shown that by applying some basic concepts of fractional calculus, the samples of the target process can be simulated as superposition of Riesz fractional derivatives of a Gaussian white noise processes
Abstract—In this paper, by investigating the definitions of the fractional power spectrum and the fr...
The spline-interpolation-based fast Fourier transform (FFT) algorithm, designated as the SFFT algori...
In this paper, the fractional spectral moments method (H-FSM) is used to generate stationary Gaussia...
In this paper, a new method for the digital simulation of multivariate wind velocity fields by fract...
In this paper, a method for the digital simulation of wind velocity fields by Fractional Spectral Mo...
The paper deals with the digital simulation of wind velocity samples by Fractional Spectral Moment f...
This paper deals with the definition of a new function that is a link between Power Spectral Density...
A very efficient procedure for the generation of multivariate wind velocity stochastic processes by ...
In this paper, an approach useful for stochastic analysis of the Gaussian and non-Gaussian behavior ...
In this paper, it aims to model wind speed time series at multiple sites. The five-parameter Johnson...
Fractional processes are widely found in science, technology and engineering systems. In Fractional ...
A new approach to provide a complete characterization of normal multivariate stochastic vector proce...
This paper offers a survey of the issue of wind velocity modelling and simulation; the theme is stud...
A significant reduction in the time required to obtain an estimate of the mean frequency of the spec...
In this paper, an alternative method to represent Gaussian stationary processes describing wind velo...
Abstract—In this paper, by investigating the definitions of the fractional power spectrum and the fr...
The spline-interpolation-based fast Fourier transform (FFT) algorithm, designated as the SFFT algori...
In this paper, the fractional spectral moments method (H-FSM) is used to generate stationary Gaussia...
In this paper, a new method for the digital simulation of multivariate wind velocity fields by fract...
In this paper, a method for the digital simulation of wind velocity fields by Fractional Spectral Mo...
The paper deals with the digital simulation of wind velocity samples by Fractional Spectral Moment f...
This paper deals with the definition of a new function that is a link between Power Spectral Density...
A very efficient procedure for the generation of multivariate wind velocity stochastic processes by ...
In this paper, an approach useful for stochastic analysis of the Gaussian and non-Gaussian behavior ...
In this paper, it aims to model wind speed time series at multiple sites. The five-parameter Johnson...
Fractional processes are widely found in science, technology and engineering systems. In Fractional ...
A new approach to provide a complete characterization of normal multivariate stochastic vector proce...
This paper offers a survey of the issue of wind velocity modelling and simulation; the theme is stud...
A significant reduction in the time required to obtain an estimate of the mean frequency of the spec...
In this paper, an alternative method to represent Gaussian stationary processes describing wind velo...
Abstract—In this paper, by investigating the definitions of the fractional power spectrum and the fr...
The spline-interpolation-based fast Fourier transform (FFT) algorithm, designated as the SFFT algori...
In this paper, the fractional spectral moments method (H-FSM) is used to generate stationary Gaussia...