This paper is concerned with the asymptotic expansion and numerical solution of systems of linear delay differential equations with highly oscillatory forcing terms. The computation of such problems using standard numerical methods is exceedingly slow and inefficient, indeed standard software is practically useless for this purpose. We propose an alternative, consisting of an asymptotic expansion of the solution, where each term can be derived either by recursion or by solving a non-oscillatory problem. This leads to methods which, counter-intuitively to those developed according to standard numerical reasoning, exhibit improved performance with growing frequency of oscillation
AbstractIt is known that the general solution of a linear delay differential equation is given by th...
In this thesis we construct a perturbation method for delay differential equations (DDEs) based on t...
AbstractIt is known that the general solution of a linear delay differential equation is given by th...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
We present a method to compute efficiently and easily solutions of systems of linear neutral delay d...
We present a method to compute efficiently and easily solutions of systems of linear neutral delay d...
We present a method to compute efficiently and easily solutions of systems of linear neutral delay d...
Abstract. We present a method to compute efficiently solutions of systems of ordinary differ-ential ...
We present a method to compute efficiently solutions of systems of ordinary differential equations (...
We present a method to compute efficiently solutions of systems of ordinary differential equations (...
We present a method to compute efficiently solutions of systems of ordinary differential equations (...
AbstractIt is known that the general solution of a linear delay differential equation is given by th...
In this thesis we construct a perturbation method for delay differential equations (DDEs) based on t...
AbstractIt is known that the general solution of a linear delay differential equation is given by th...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
This paper is concerned with the asymptotic expansion and numerical solution of systems of linear de...
We present a method to compute efficiently and easily solutions of systems of linear neutral delay d...
We present a method to compute efficiently and easily solutions of systems of linear neutral delay d...
We present a method to compute efficiently and easily solutions of systems of linear neutral delay d...
Abstract. We present a method to compute efficiently solutions of systems of ordinary differ-ential ...
We present a method to compute efficiently solutions of systems of ordinary differential equations (...
We present a method to compute efficiently solutions of systems of ordinary differential equations (...
We present a method to compute efficiently solutions of systems of ordinary differential equations (...
AbstractIt is known that the general solution of a linear delay differential equation is given by th...
In this thesis we construct a perturbation method for delay differential equations (DDEs) based on t...
AbstractIt is known that the general solution of a linear delay differential equation is given by th...