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Rate-Splitting Multiple Access for Intelligent Reflecting Surface-Aided Secure Transmission
Ying Gao1; Qingqing Wu2; Wen Chen2; Derrick Wing Kwan Ng3
2022-11-24
Source PublicationIEEE COMMUNICATIONS LETTERS
ISSN1089-7798
Volume27Issue:2Pages:482-486
Abstract

In this letter, we study a rate-splitting multiple access (RSMA)-based intelligent reflecting surface (IRS)-aided multi-user multiple-input single-output (MISO) secure communication system with a potential eavesdropper (Eve). Aiming to maximize the minimum secrecy rate (SR) among all the legitimate users (LUs), a design problem for jointly optimizing the transmit beamforming with artificial noise (AN), the IRS beamforming, and the secrecy common rate allocation is formulated. Since the design problem is highly non-convex with coupled optimization variables, we develop a computationally efficient algorithm based on the alternating optimization (AO) technique to solve it suboptimally. Numerical results demonstrate that the proposed design can significantly improve the max-min SR over the benchmark schemes without IRS or adopting other multiple access techniques. In particular, employing the RSMA strategy can substantially reduce the required numbers of IRS elements for achieving a target level of secrecy performance compared with the benchmark schemes.

KeywordRate-splitting Multiple Access Intelligent Reflecting Surface Physical Layer Security Max-min Fairness
DOI10.1109/LCOMM.2022.3224499
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaTelecommunications
WOS SubjectTelecommunications
WOS IDWOS:000966705500001
Scopus ID2-s2.0-85144064360
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Citation statistics
Document TypeJournal article
CollectionTHE STATE KEY LABORATORY OF INTERNET OF THINGS FOR SMART CITY (UNIVERSITY OF MACAU)
Corresponding AuthorQingqing Wu
Affiliation1.State Key Laboratory of Internet of Things for Smart City, University of Macau, Macau, China
2.Department of Electronic Engineering, Shanghai Jiao Tong University, Shanghai, China
3.School of Electrical Engineering and Telecommunications, University of New South Wales, NSW, Australia
First Author AffilicationUniversity of Macau
Recommended Citation
GB/T 7714
Ying Gao,Qingqing Wu,Wen Chen,et al. Rate-Splitting Multiple Access for Intelligent Reflecting Surface-Aided Secure Transmission[J]. IEEE COMMUNICATIONS LETTERS, 2022, 27(2), 482-486.
APA Ying Gao., Qingqing Wu., Wen Chen., & Derrick Wing Kwan Ng (2022). Rate-Splitting Multiple Access for Intelligent Reflecting Surface-Aided Secure Transmission. IEEE COMMUNICATIONS LETTERS, 27(2), 482-486.
MLA Ying Gao,et al."Rate-Splitting Multiple Access for Intelligent Reflecting Surface-Aided Secure Transmission".IEEE COMMUNICATIONS LETTERS 27.2(2022):482-486.
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