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384546

Accelerated fitted operator finite difference method for singularly perturbed delay differential equations with non-local boundary condition

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Last updated: 31 Dec 2024

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Abstract

n this paper, accelerated fitted finite difference method for solving singularly perturbed
delay differential equation with non-local boundary condition is considered. To treat the
non-local boundary condition, Simpson's rule is applied. The stability and parameter
uniform convergence for the proposed method are proved. To validate the applicability of
the scheme, two model problems are considered for numerical experimentation and
solved for different values of the perturbation parameter ε and mesh size h. The numerical
results are tabulated in terms of maximum absolute errors and rate of convergence, and it
is observed that the present method is more accurate and ε-uniformly convergent for h ≥ ε
where the classical numerical methods fails to give good result, and it also improves the
results of the methods existing in the literature.

DOI

10.1186/s42787-020-00076-6

Keywords

Singularly perturbed problems, Delay differential equation, Fitted finite difference, Non-local boundary condition

Authors

First Name

Habtamu

Last Name

Debela

MiddleName

Garoma

Affiliation

Department of Mathematics, Jimma University, P. O. Box 378, Jimma, Ethiopia

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City

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Orcid

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First Name

Gemechis

Last Name

Duressa

MiddleName

File

Affiliation

Department of Mathematics, Jimma University, P. O. Box 378, Jimma, Ethiopia

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City

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Orcid

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Volume

28

Article Issue

1

Related Issue

50535

Issue Date

2020-06-01

Receive Date

2024-10-07

Publish Date

2020-06-01

Page Start

1

Page End

16

Print ISSN

1110-256X

Online ISSN

2090-9128

Link

https://joems.journals.ekb.eg/article_384546.html

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https://joems.journals.ekb.eg/service?article_code=384546

Order

384,546

Publication Type

Journal

Publication Title

Journal of the Egyptian Mathematical Society

Publication Link

https://joems.journals.ekb.eg/

MainTitle

Accelerated fitted operator finite difference method for singularly perturbed delay differential equations with non-local boundary condition

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Type

Article

Created At

21 Dec 2024