浏览全部资源
扫码关注微信
杭州电子科技大学,浙江 杭州 310018
[ "罗延翠(1998- ),女,杭州电子科技大学硕士生,主要研究方向为无线通信。" ]
[ "李光球(1966- ),男,博士,杭州电子科技大学教授,主要研究方向为无线通信、信息论与编码。" ]
[ "叶明珠(1999- ),女,杭州电子科技大学硕士生,主要研究方向为无线通信。" ]
[ "高辉(1997- ),男,杭州电子科技大学硕士生,主要研究方向为无线通信。" ]
[ "张亚娟(1998- ),女,杭州电子科技大学硕士生,主要研究方向为无线通信。" ]
收稿日期:2023-11-29,
修回日期:2024-01-09,
纸质出版日期:2024-03-20
移动端阅览
罗延翠,李光球,叶明珠等.中继选择NOMA无线系统的物理层安全[J].电信科学,2024,40(03):116-127.
LUO Yancui,LI Guangqiu,YE Mingzhu,et al.Physical layer security of relay selection NOMA wireless systems[J].Telecommunications Science,2024,40(03):116-127.
罗延翠,李光球,叶明珠等.中继选择NOMA无线系统的物理层安全[J].电信科学,2024,40(03):116-127. DOI: 10.11959/j.issn.1000-0801.2024077.
LUO Yancui,LI Guangqiu,YE Mingzhu,et al.Physical layer security of relay selection NOMA wireless systems[J].Telecommunications Science,2024,40(03):116-127. DOI: 10.11959/j.issn.1000-0801.2024077.
针对解码转发协作非正交多址接入(non-orthogonal multiple access,NOMA)系统物理层安全(physical layer security,PLS)性能较差,以及在多窃听者场景下PLS性能恶化的问题,提出了一种采用修改转发(modify-and-forward,MF)协议的多中继选择NOMA无线系统PLS模型。利用高斯-切比雪夫正交定理推导了非合谋或合谋窃听场景下多中继选择MF-NOMA无线系统的安全中断概率和渐近安全中断概率的近似表达式。仿真结果验证了多中继选择MF-NOMA无线系统PLS性能分析的准确性。结果同时也表明中继数目越多或窃听者数目越少,多中继选择MF-NOMA无线系统的PLS性能越好;合谋窃听比非合谋窃听更不利于多中继MF-NOMA无线系统的安全传输。
Aiming at poor performance of physical layer security (PLS) of decode-and-forward cooperative non-orthogonal multiple access (NOMA) systems and its performance deterioration in the presence of multi-eavesdropper
the PLS model of multi-relay selection NOMA wireless systems using modify-and-forward (MF) protocol was proposed. The approximate expressions of secrecy outage probability(SOP) and asymptotic SOP of multi-relay selection MF-NOMA wireless systems with non-colluding or colluding eavesdropping scenarios were derived by using Gauss-Chebyshev Quadrature theorem. The simulation results verify the accuracy of PLS performance analysis of the above MF-NOMA wireless systems. The results also indicate that the PLS performance of multi-relay selection MF-NOMA wireless systems will be improved when the number of relays increases or the number of eavesdroppers decreases
and that colluding eavesdropping is more detrimental to secure transmission of multi-relay MF-NOMA wireless systems than non-colluding eavesdropping.
DAI L L , WANG B C , YUAN Y F , et al . Non-orthogonal multiple access for 5G: solutions, challenges, opportunities, and future research trends [J ] . IEEE Communications Magazine , 2015 , 53 ( 9 ): 74 - 81 .
DAI L L , WANG B C , DING Z G , et al . A survey of non-orthogonal multiple access for 5G [J ] . IEEE Communications Surveys & Tutorials , 2018 , 20 ( 3 ): 2294 - 2323 .
YANG Q , WANG H M , NG D W K , et al . NOMA in downlink sdma with limited feedback: performance analysis and optimization [J ] . IEEE Journal on Selected Areas in Communications , 2017 , 35 ( 10 ): 2281 - 2294 .
ABU MAHADY I , BEDEER E , IKKI S , et al . Sum-rate maximization of NOMA systems under imperfect successive interference cancellation [J ] . IEEE Communications Letters , 2019 , 23 ( 3 ): 474 - 477 .
MAGABLEH A , ALDALAGAMOUNI T , MUHAIDAT S , et al . Capacity analysis of non-orthogonal multiple access systems over N-Nakagami fading channels for 5G and beyond [C ] // 2020 7th International Conference on Electrical and Electronics Engineering (ICEEE) . 2020 : 232 - 236 .
IBRAHIM A S , SADEK A K , SU W , et al . Cooperative communications with relay-selection: when to cooperate and whom to cooperate with? [J ] . IEEE Transactions on Wireless Communications , 2008 , 7 ( 7 ): 2814 - 2827 .
KIM J B , LEE I H . Capacity analysis of cooperative relaying systems using non-orthogonal multiple access [J ] . IEEE Communications Letters , 2015 , 19 ( 11 ): 1949 - 1952 .
ABBASI O , EBRAHIMI A , MOKARI N . NOMA inspired cooperative relaying system using an AF relay [J ] . IEEE Wireless Communications Letters , 2019 , 8 ( 1 ): 261 - 264 .
TREGANCINI A , OLIVO E E B , OSORIO D P M , et al . Performance analysis of full-duplex relay-aided NOMA systems using partial relay selection [J ] . IEEE Transactions on Vehicular Technology , 2020 , 69 ( 1 ): 622 - 635 .
DING Z , DAI H , POOR H V . Relay selection for cooperative NOMA [J ] . IEEE Wireless Communications Letters , 2016 , 5 ( 4 ): 416 - 419 .
SHIM K , NGUYEN T V , AN B . Exploiting opportunistic scheduling schemes to improve physical-layer security in MU-MISO NOMA systems [J ] . IEEE Access , 2019 ( 7 ): 180867 - 180886 .
WANG D , BAI B , ZHAO W , et al . A survey of optimization approaches for wireless physical layer security [J ] . IEEE Communications Surveys & Tutorials , 2019 , 21 ( 2 ): 1878 - 1911 .
HUU T P , THI-THANH T N , NGUYEN-YEN C , et al . Secrecy outage probability and fairness of packet transmission time in a NOMA system [J ] . IEEE Access , 2020 ( 8 ): 79637 - 79649 .
张继荣 , 刘玉 . 存在窃听者的协作中继NOMA系统安全性能分析 [J ] . 西安邮电大学学报 , 2023 , 28 ( 2 ): 19 - 28
ZHANG J R , LIU Y . Security performance analysis of NOMA cooperative relay system with the presence of eavesdropper [J ] . Journal of Xi 'an University of Post and Telecommunications , 2023 , 28 ( 2 ): 19 - 28 .
CHEN J C , YANG L , ALOUINI M S . Physical layer security for cooperative NOMA systems [J ] . IEEE Transactions on Vehicular Technology , 2018 , 67 ( 5 ): 4645 - 4649 .
LI A . Enhancing the physical layer security of cooperative NOMA system [C ] // 2019 IEEE 3rd Information Technology, Networking, Electronic and Automation Control Conference (ITNEC) . Piscataway : IEEE Press , 2019 : 2194 - 2198 .
LI H , CHEN Y P , ZHU M F , et al . Secrecy outage probability of relay selection based cooperative NOMA for IoT networks [J ] . IEEE Access , 2021 ( 9 ): 1655 - 1665 .
HOANG T M , DUNG L T , NGUYEN B C , et al . Secrecy outage performance of FD-NOMA relay system with multiple non-colluding eavesdroppers [J ] . IEEE Transactions on Vehicular Technology , 2021 , 70 ( 12 ): 12985 - 12997 .
ZAGHDOUD N , MNAOUER A B , BOUJEMAA H , et al . Secrecy performance of cooperative NOMA system with multiple full-duplex relays against non-colluding/colluding eavesdroppers [C ] // Proceedings of 2020 IEEE 45th LCN Symposium on Emerging Topics in Networking (LCN Symposium) . Piscataway : IEEE Press , 2020 : 70 - 77 .
YU C , KO H L , PENG X , et al . Secrecy outage performance analysis for cooperative NOMA over Nakagami-m channel [J ] . IEEE Access , 2019 ( 7 ): 79866 - 79876 .
KIM S W . Modify-and-forward for securing cooperative relay communications [C ] // Proceedings of 2014 International Zurich Seminar on Communications . [ S .L.:s.n. ] , 2014 : 136 – 139 .
CHU S I . Secrecy analysis of modify-and-forward relaying with relay selection [J ] . IEEE Transactions on Vehicular Technology , 2019 , 68 ( 2 ): 1796 - 1809 .
程英 , 李光球 , 沈静洁 , 等 . MF中继选择系统的物理层安全性能 [J ] . 电信科学 , 2021 , 37 ( 9 ): 95 - 104 .
CHENG Y , LI G Q , SHEN J J , et al . Physical layer security performance of MF relay selection systems [J ] . Telecommunications Science , 2021 , 37 ( 9 ): 95 - 104 .
张延良 , 田月华 , 李兴旺 , 等 . 基于MF协议的协作NOMA系统物理层安全性能研究 [J ] . 电子与信息学报 , 2023 , 45 ( 4 ): 1211 - 1218 .
ZHANG Y L , TIAN Y H , LI X W , et al . Research on physical layer security of cooperative NOMA system based on MF protocol [J ] . Journal of Electronics & Information Technology , 2023 , 45 ( 4 ): 1211 - 1218 .
GRADSHTEIN I S , RYZHIK I M , JEFFREY A . Table of integrals, series, and products [M ] . Boston : Academic Press , 2007 .
ABRAMOWITZ M , STEGUN I A , MILLER D . Handbook of mathematical functions with formulas, graphs and mathematical tables (national bureau of standards applied mathematics series no. 55) [J ] . Journal of Applied Mechanics , 1965 , 32 ( 1 ): 239 - 239 .
0
浏览量
6
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构