Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex Radio

This paper focuses on how to effectively improve the tradeoff between security and reliability by developing power allocation problems for a secure relaying network with a full-duplex (FD) relay, an FD receiver and a passive eavesdropper. FD radio here is utilized for cooperative jamming. The securi...

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Main Authors: Chensi Zhang, Fan Jia, Jianhua Ge, Fengkui Gong
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8493558/
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spelling doaj-017d824aa8404dfda3e33ac8112a00582021-03-29T21:24:02ZengIEEEIEEE Access2169-35362018-01-016608626086810.1109/ACCESS.2018.28764468493558Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex RadioChensi Zhang0https://orcid.org/0000-0002-8427-5671Fan Jia1Jianhua Ge2Fengkui Gong3https://orcid.org/0000-0002-4211-0959State Key Laboratory of Integrated Service Networks, Xidian University, Xi’an, ChinaState Key Laboratory of Integrated Service Networks, Xidian University, Xi’an, ChinaState Key Laboratory of Integrated Service Networks, Xidian University, Xi’an, ChinaState Key Laboratory of Integrated Service Networks, Xidian University, Xi’an, ChinaThis paper focuses on how to effectively improve the tradeoff between security and reliability by developing power allocation problems for a secure relaying network with a full-duplex (FD) relay, an FD receiver and a passive eavesdropper. FD radio here is utilized for cooperative jamming. The security and reliability are characterized by the secrecy rate and the data rate, respectively. The total transmit power is divided into two parts: one for data transmission and the other for jamming. The power allocation problem is split into data rate optimization and secrecy rate optimization, which will greatly simplify the tradeoff process. Closed-form solutions of the two subproblems are obtained. By applying these results, a security-reliability tradeoff strategy is proposed. Numerical results have shown that the proposed security-reliability tradeoff strategy can approach the Pareto optimal front. Using the strategy, one can make the tradeoff between security and reliability efficiently by adjusting only one tradeoff factor.https://ieeexplore.ieee.org/document/8493558/Physical-layer securitysecurity-reliability tradeofffull-duplexpower allocationrelay
collection DOAJ
language English
format Article
sources DOAJ
author Chensi Zhang
Fan Jia
Jianhua Ge
Fengkui Gong
spellingShingle Chensi Zhang
Fan Jia
Jianhua Ge
Fengkui Gong
Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex Radio
IEEE Access
Physical-layer security
security-reliability tradeoff
full-duplex
power allocation
relay
author_facet Chensi Zhang
Fan Jia
Jianhua Ge
Fengkui Gong
author_sort Chensi Zhang
title Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex Radio
title_short Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex Radio
title_full Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex Radio
title_fullStr Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex Radio
title_full_unstemmed Security-Reliability Tradeoff for Secure Relaying Systems With Full-Duplex Radio
title_sort security-reliability tradeoff for secure relaying systems with full-duplex radio
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description This paper focuses on how to effectively improve the tradeoff between security and reliability by developing power allocation problems for a secure relaying network with a full-duplex (FD) relay, an FD receiver and a passive eavesdropper. FD radio here is utilized for cooperative jamming. The security and reliability are characterized by the secrecy rate and the data rate, respectively. The total transmit power is divided into two parts: one for data transmission and the other for jamming. The power allocation problem is split into data rate optimization and secrecy rate optimization, which will greatly simplify the tradeoff process. Closed-form solutions of the two subproblems are obtained. By applying these results, a security-reliability tradeoff strategy is proposed. Numerical results have shown that the proposed security-reliability tradeoff strategy can approach the Pareto optimal front. Using the strategy, one can make the tradeoff between security and reliability efficiently by adjusting only one tradeoff factor.
topic Physical-layer security
security-reliability tradeoff
full-duplex
power allocation
relay
url https://ieeexplore.ieee.org/document/8493558/
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AT fengkuigong securityreliabilitytradeoffforsecurerelayingsystemswithfullduplexradio
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