Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM System

In the 21st century, it is not possible to implement fully optical communication systems without software tools to test the system for all unwanted phenomena occurring during real-time operation. With ever-increasing transmission rate and low latency, nonlinear phenomena are associated with higher p...

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Main Authors: Tomáš Ivaniga, Petr Ivaniga
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:International Journal of Optics
Online Access:http://dx.doi.org/10.1155/2019/9357949
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author Tomáš Ivaniga
Petr Ivaniga
author_facet Tomáš Ivaniga
Petr Ivaniga
author_sort Tomáš Ivaniga
collection DOAJ
description In the 21st century, it is not possible to implement fully optical communication systems without software tools to test the system for all unwanted phenomena occurring during real-time operation. With ever-increasing transmission rate and low latency, nonlinear phenomena are associated with higher power levels and smaller spacing between channels began to appear in OFs (optical fibers). This paper aims to implement a four-channel DWDM (Dense Wavelength Division Multiplex) system on which the nonlinear XPM (cross-phase modulation) phenomenon will be investigated. At the output of the system, we will eliminate the phenomenon (partially suppressed) by the appropriate choice of transmitting power levels (power levels operating at 193,025 THz to 193,175 THz) when the OF is dispersed. In optical transfer data systems a system is functioning if the measured BER parameter is not bigger than 10−12.
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publishDate 2019-01-01
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series International Journal of Optics
spelling doaj-art-75f16cf76126438f8aae17bc053c9f7c2025-08-20T03:19:11ZengWileyInternational Journal of Optics1687-93841687-93922019-01-01201910.1155/2019/93579499357949Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM SystemTomáš Ivaniga0Petr Ivaniga1Department of Electronics and Multimedia Communications, University of Technology Košice, Košice, SlovakiaDepartment of Information Networks, Faculty of Management Science and Informatics, University of Žilina, Žilina, SlovakiaIn the 21st century, it is not possible to implement fully optical communication systems without software tools to test the system for all unwanted phenomena occurring during real-time operation. With ever-increasing transmission rate and low latency, nonlinear phenomena are associated with higher power levels and smaller spacing between channels began to appear in OFs (optical fibers). This paper aims to implement a four-channel DWDM (Dense Wavelength Division Multiplex) system on which the nonlinear XPM (cross-phase modulation) phenomenon will be investigated. At the output of the system, we will eliminate the phenomenon (partially suppressed) by the appropriate choice of transmitting power levels (power levels operating at 193,025 THz to 193,175 THz) when the OF is dispersed. In optical transfer data systems a system is functioning if the measured BER parameter is not bigger than 10−12.http://dx.doi.org/10.1155/2019/9357949
spellingShingle Tomáš Ivaniga
Petr Ivaniga
Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM System
International Journal of Optics
title Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM System
title_full Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM System
title_fullStr Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM System
title_full_unstemmed Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM System
title_short Suppression of Nonlinear XPM Phenomenon by Selection of Appropriate Transmit Power Levels in the DWDM System
title_sort suppression of nonlinear xpm phenomenon by selection of appropriate transmit power levels in the dwdm system
url http://dx.doi.org/10.1155/2019/9357949
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