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63497

Optimization of DCF Position for the Compensation of Chromatic Dispersion in High Speed Optical Links

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Last updated: 25 Dec 2024

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Abstract

Optical fiber is responsible for telecommunication revolution today due to its unlimited bandwidth, its ability to transmit the signal for long distance without any repeater and it is more secure than other transmission mediums. It can also support a ring and mesh topologies protection to protect the transferred data. There are many problems that face the data transmitted through optical fiber. Chromatic dispersion (CD) is one of these problems that affects the signal quality and limits the bandwidth. This paper introduces the technique of dispersion compensation fiber (DCF) to improve the signal quality and reduce the bit error rate (BER) in the high-speed optical links. Three different positions (pre-compensation, post-compensation and mixcompensation) for DCF are studied in this paper in terms of bit error rate and quality factor (Q-Factor). The simulation is performed for channel with single wavelength and dense wavelength division multiplexing (DWDM) with multiple wavelengths.

DOI

10.21608/mjeer.2017.63497

Authors

First Name

Walid S.

Last Name

El-Deeb

MiddleName

-

Affiliation

Department of Electronics and Communication Engineering, Faculty of Engineering, Zagazig University, Zagazig, P.O Box 4451, Egypt.

Email

wseldeeb@zu.edu.eg

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Orcid

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Volume

26

Article Issue

2

Related Issue

9503

Issue Date

2017-07-01

Receive Date

2016-10-20

Publish Date

2017-07-01

Page Start

293

Page End

305

Print ISSN

1687-1189

Online ISSN

2682-3535

Link

https://mjeer.journals.ekb.eg/article_63497.html

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https://mjeer.journals.ekb.eg/service?article_code=63497

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1

Type

Original Article

Type Code

1,088

Publication Type

Journal

Publication Title

Menoufia Journal of Electronic Engineering Research

Publication Link

https://mjeer.journals.ekb.eg/

MainTitle

Optimization of DCF Position for the Compensation of Chromatic Dispersion in High Speed Optical Links

Details

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Article

Created At

22 Jan 2023