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A Finite Difference Scheme for a Class of Singularly Perturbed Initial Value Problems for Delay Differential Equations

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Date

2009

Journal Title

Journal ISSN

Volume Title

Publisher

Springer

Abstract

This study deals with the singularly perturbed initial value problem for a quasilinear first-order delay differential equation. A numerical method is generated on a grid that is constructed adaptively from a knowledge of the exact solution, which involves appropriate piecewise-uniform mesh on each time subinterval. An error analysis shows that the method is first order convergent except for a logarithmic factor, in the discrete maximum norm, independently of the perturbation parameter. The parameter uniform convergence is confirmed by numerical computations.

Description

Amiraliyev, Gabil M./0000-0001-6585-7353

Keywords

Delay Differential Equation, Singular Perturbation, Finite Difference Scheme, Piecewise-Uniform Mesh, Error Estimates

Turkish CoHE Thesis Center URL

WoS Q

Q1

Scopus Q

Q1

Source

Volume

52

Issue

4

Start Page

663

End Page

675