Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & Reliability
A numerical study is presented in this paper based on semiconductor laser chaos generation which is being used to hide multi-level data signal, i.e., duo-binary message to take the advantage of secure environment & higher data rates at the same time. Duobinary message is generated by using t...
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doaj-571ea9807f2f4c4b822b80503c091a912021-03-29T20:18:11ZengIEEEIEEE Access2169-35362017-01-015177951780210.1109/ACCESS.2017.27520028036176Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & ReliabilityFarhan Qamar0https://orcid.org/0000-0003-4406-4308Muhammad Khawar Islam1https://orcid.org/0000-0001-5919-2260Syed Zafar Ali Shah2Romana Farhan3Mudassar Ali4Department of Telecommunication Engineering, University of Engineering and Technology, Taxila, Taxila, PakistanDepartment of Electrical Engineering, Taibah University, Al Madinah Al Munawarah, Saudi ArabiaDepartment of Electrical Engineering, Air University, E-9 Islamabad, PakistanDepartment of Computer Engineering, University of Engineering and Technology, Taxila, Taxila, PakistanDepartment of Telecommunication Engineering, University of Engineering and Technology, Taxila, Taxila, PakistanA numerical study is presented in this paper based on semiconductor laser chaos generation which is being used to hide multi-level data signal, i.e., duo-binary message to take the advantage of secure environment & higher data rates at the same time. Duobinary message is generated by using the combination of duobinary precoder, duobinary generator & RZ/NRZ pulse generator. Laser rate equations are used to model chaos generation through semiconductor laser whereas message is made secured by hiding it through chaos masking scheme. Propagation of chaos hiding the multi-format message is studied for long distance communication model. Synchronization between transmitter & receiver is achieved to obtain the acceptable eye-diagrams & quality factor (Q-factor). Q-factor is function of optical signal to noise ratio (OSNR) that gives a qualitative performance of receiver. It provides the minimum SNR to obtain specific bit error rate of signal. A comparison is made with & without deployment of chaos masking scheme on RZ & NRZ duobinary optical system to observe the penalty in terms of Q-factor. In addition, response of amplifier on chaotic signal due to its nonlinearities is investigated by varying the gain of amplifier.https://ieeexplore.ieee.org/document/8036176/Duobinary modulation formatSemi-conductor lasersChaos synchronizationChaos message maskingOptical amplifierDCF (Dispersion Compensation Fiber) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Farhan Qamar Muhammad Khawar Islam Syed Zafar Ali Shah Romana Farhan Mudassar Ali |
spellingShingle |
Farhan Qamar Muhammad Khawar Islam Syed Zafar Ali Shah Romana Farhan Mudassar Ali Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & Reliability IEEE Access Duobinary modulation format Semi-conductor lasers Chaos synchronization Chaos message masking Optical amplifier DCF (Dispersion Compensation Fiber) |
author_facet |
Farhan Qamar Muhammad Khawar Islam Syed Zafar Ali Shah Romana Farhan Mudassar Ali |
author_sort |
Farhan Qamar |
title |
Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & Reliability |
title_short |
Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & Reliability |
title_full |
Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & Reliability |
title_fullStr |
Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & Reliability |
title_full_unstemmed |
Secure Duobinary Signal Transmission in Optical Communication Networks for High Performance & Reliability |
title_sort |
secure duobinary signal transmission in optical communication networks for high performance & reliability |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2017-01-01 |
description |
A numerical study is presented in this paper based on semiconductor laser chaos generation which is being used to hide multi-level data signal, i.e., duo-binary message to take the advantage of secure environment & higher data rates at the same time. Duobinary message is generated by using the combination of duobinary precoder, duobinary generator & RZ/NRZ pulse generator. Laser rate equations are used to model chaos generation through semiconductor laser whereas message is made secured by hiding it through chaos masking scheme. Propagation of chaos hiding the multi-format message is studied for long distance communication model. Synchronization between transmitter & receiver is achieved to obtain the acceptable eye-diagrams & quality factor (Q-factor). Q-factor is function of optical signal to noise ratio (OSNR) that gives a qualitative performance of receiver. It provides the minimum SNR to obtain specific bit error rate of signal. A comparison is made with & without deployment of chaos masking scheme on RZ & NRZ duobinary optical system to observe the penalty in terms of Q-factor. In addition, response of amplifier on chaotic signal due to its nonlinearities is investigated by varying the gain of amplifier. |
topic |
Duobinary modulation format Semi-conductor lasers Chaos synchronization Chaos message masking Optical amplifier DCF (Dispersion Compensation Fiber) |
url |
https://ieeexplore.ieee.org/document/8036176/ |
work_keys_str_mv |
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