Secure transmission in an unfriendly environment

This work investigates and show the performance of destination assisted node in ensuring secure communication in a dual-hop broadcast system. The information transmission occurs between the transmitters which are assumed to be equipped with single antenna through a number of intermediate untrusted r...

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Main Authors: Lukman A. Olawoyin, Nasir Faruk, Abdulkarim A. Oloyede, Segun I. Popoola, Temitayo C. Adeniran, Nazmat T. Surajudeen-Bakinde, Abubakar Abdulkarim
Format: Article
Language:English
Published: Elsevier 2020-06-01
Series:ICT Express
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405959519301687
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spelling doaj-6b9858ae297d45ddbd228d9bb9f23daf2020-11-25T03:03:50ZengElsevierICT Express2405-95952020-06-0162104108Secure transmission in an unfriendly environmentLukman A. Olawoyin0Nasir Faruk1Abdulkarim A. Oloyede2Segun I. Popoola3Temitayo C. Adeniran4Nazmat T. Surajudeen-Bakinde5Abubakar Abdulkarim6Department of Telecommunication Science, University of Ilorin, Nigeria; Corresponding author.Department of Telecommunication Science, University of Ilorin, NigeriaDepartment of Telecommunication Science, University of Ilorin, NigeriaDepartment of Engineering, Manchester Metropolitan University, M1 5GD, Manchester, UK; Department of Electrical and Information Engineering, Covenant University, Ota, NigeriaDepartment of Telecommunication Science, University of Ilorin, NigeriaDepartment of Electrical and Electronics Engineering, University of Ilorin, NigeriaDepartment of Electrical Engineering, ABU, Zaria, NigeriaThis work investigates and show the performance of destination assisted node in ensuring secure communication in a dual-hop broadcast system. The information transmission occurs between the transmitters which are assumed to be equipped with single antenna through a number of intermediate untrusted relays to the receiver in the presence of multiple passive eavesdroppers. This work assumes that there is no direct link between the transmitter and the receiver and hence, the relay node, receives either the information or noise signal at every transmission processes. Since the transmission occurs in a two-phase, the legitimate receiver is contributing a degrading noise to both the eavesdropper and relay node channels during the first phase while it receives information from the transmitter through the relay during the second phase. Simulation results are used to illustrate the performance of the proposed scheme.http://www.sciencedirect.com/science/article/pii/S2405959519301687Artificial noiseFull-duplexSecure transmissionAverage secrecy capacitySecure outage probability
collection DOAJ
language English
format Article
sources DOAJ
author Lukman A. Olawoyin
Nasir Faruk
Abdulkarim A. Oloyede
Segun I. Popoola
Temitayo C. Adeniran
Nazmat T. Surajudeen-Bakinde
Abubakar Abdulkarim
spellingShingle Lukman A. Olawoyin
Nasir Faruk
Abdulkarim A. Oloyede
Segun I. Popoola
Temitayo C. Adeniran
Nazmat T. Surajudeen-Bakinde
Abubakar Abdulkarim
Secure transmission in an unfriendly environment
ICT Express
Artificial noise
Full-duplex
Secure transmission
Average secrecy capacity
Secure outage probability
author_facet Lukman A. Olawoyin
Nasir Faruk
Abdulkarim A. Oloyede
Segun I. Popoola
Temitayo C. Adeniran
Nazmat T. Surajudeen-Bakinde
Abubakar Abdulkarim
author_sort Lukman A. Olawoyin
title Secure transmission in an unfriendly environment
title_short Secure transmission in an unfriendly environment
title_full Secure transmission in an unfriendly environment
title_fullStr Secure transmission in an unfriendly environment
title_full_unstemmed Secure transmission in an unfriendly environment
title_sort secure transmission in an unfriendly environment
publisher Elsevier
series ICT Express
issn 2405-9595
publishDate 2020-06-01
description This work investigates and show the performance of destination assisted node in ensuring secure communication in a dual-hop broadcast system. The information transmission occurs between the transmitters which are assumed to be equipped with single antenna through a number of intermediate untrusted relays to the receiver in the presence of multiple passive eavesdroppers. This work assumes that there is no direct link between the transmitter and the receiver and hence, the relay node, receives either the information or noise signal at every transmission processes. Since the transmission occurs in a two-phase, the legitimate receiver is contributing a degrading noise to both the eavesdropper and relay node channels during the first phase while it receives information from the transmitter through the relay during the second phase. Simulation results are used to illustrate the performance of the proposed scheme.
topic Artificial noise
Full-duplex
Secure transmission
Average secrecy capacity
Secure outage probability
url http://www.sciencedirect.com/science/article/pii/S2405959519301687
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AT segunipopoola securetransmissioninanunfriendlyenvironment
AT temitayocadeniran securetransmissioninanunfriendlyenvironment
AT nazmattsurajudeenbakinde securetransmissioninanunfriendlyenvironment
AT abubakarabdulkarim securetransmissioninanunfriendlyenvironment
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