AbstractNon-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equations using fractional linear multistep formulae are introduced. Fully parallel discrete waveform relaxation methods having an optimal convergence rate are constructed. A significant expression of the error is proved, which allows us to estimate the number of iterations needed to satisfy a prescribed tolerance and allows us to identify the problems where the optimal methods offer the best performance. The numerical experiments confirm the theoretical expectations
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
A significative number of recent applications require numerical solution of large systems of Abel-Vo...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
AbstractIn this paper we present an efficient and fast parallel waveform relaxation method for Volte...
In this paper we present an efficient and fast parallel waveform relaxation method for Volterra inte...
The authors present a waveform relaxation (WR)method for systems of nonlinear Volterra integral equa...
The authors present a waveform relaxation (WR)method for systems of nonlinear Volterra integral equa...
The authors present a waveform relaxation (WR)method for systems of nonlinear Volterra integral equa...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
A significative number of recent applications require numerical solution of large systems of Abel-Vo...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
A significative number of recent applications require numerical solution of large systems of Abel-Vo...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
Non-stationary discrete time waveform relaxation methods for Abel systems of Volterra integral equat...
AbstractIn this paper we present an efficient and fast parallel waveform relaxation method for Volte...
In this paper we present an efficient and fast parallel waveform relaxation method for Volterra inte...
The authors present a waveform relaxation (WR)method for systems of nonlinear Volterra integral equa...
The authors present a waveform relaxation (WR)method for systems of nonlinear Volterra integral equa...
The authors present a waveform relaxation (WR)method for systems of nonlinear Volterra integral equa...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
A significative number of recent applications require numerical solution of large systems of Abel-Vo...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
The purpose of this paper is to employ graphics processing units for the numerical solution of large...
A significative number of recent applications require numerical solution of large systems of Abel-Vo...