Secure Hybrid A/D Beamforming for Hardware-Efficient Large-Scale Multiple-Antenna SWIPT Systems

被引:14
作者
Cai, Yunlong [1 ,2 ]
Cui, Fangyu [3 ]
Shi, Qingjiang [4 ,5 ]
Wu, Yongpeng [6 ]
Champagne, Benoit [7 ]
Hanzo, Lajos [8 ]
机构
[1] Zhejiang Univ, Dept ISEE, Hangzhou 310027, Peoples R China
[2] Beijing Jiaotong Univ, State Key Lab Rail Traff Control & Safety, Beijing 100044, Peoples R China
[3] ZTE Corp, Shanghai 201210, Peoples R China
[4] Tongji Univ, Sch Software Engn, Shanghai 201804, Peoples R China
[5] Shenzhen Res Inst Big Data, Shenzhen 518172, Peoples R China
[6] Shanghai Jiao Tong Univ, Dept EE, Shanghai 200240, Peoples R China
[7] McGill Univ, Dept ECE, Montreal, PQ H3A 0G4, Canada
[8] Univ Southampton, Dept ECS, Southampton SO17 1BJ, Hants, England
基金
英国工程与自然科学研究理事会; 欧洲研究理事会; 中国国家自然科学基金; 国家重点研发计划;
关键词
Analog-digital conversion; Optimization; Covariance matrices; Array signal processing; Receivers; Radio frequency; Hybrid power systems; Robust hybrid A; D beamforming; secure communications; large-scale multiple-antenna; energy harvesting; joint optimization; SIMULTANEOUS WIRELESS INFORMATION; JOINT TRANSCEIVER DESIGN; PHYSICAL LAYER SECURITY; POWER TRANSFER; COMMUNICATION; NETWORKS; TRANSMISSION; OPTIMIZATION; MMWAVE; MODEL;
D O I
10.1109/TCOMM.2020.3006913
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this work, we investigate the problem of secure communications in a downlink large-scale multi-antenna assisted simultaneous wireless information and power transfer (SWIPT) system, where a base station (BS) transmits signals to serve a number of information decoding (ID) and energy harvesting (EH) users. Considering that the EH users can potentially eavesdrop the ID users' confidential information, we study the robust joint design of the hybrid analog-digital (A/D) beamforming (BF) matrices and of the artificial redundant signal (ARS) covariance matrix at the BS, where the aim is to maximize the worst-case sum secrecy rate for the ID users under a transmit power constraint, a nonlinear EH constraint and a unit-modulus constraint on the entries of the analog BF matrix. The corresponding optimization problem is very challenging due to the nonlinear and nonconvex objective function and constraints. Using innovative optimization techniques, we first transform the original problem into an equivalent but more tractable form, and then develop a novel joint iterative algorithm based on the penalty-concave-convex procedure (CCCP) for solving the resultant problem. We show that the proposed penalty-CCCP based algorithm for ARS-aided robust joint hybrid BF design converges to a Karush-Kuhn-Tucker solution of the original problem, and also analyze its computational complexity. Our simulation results verify that the resultant robust joint hybrid BF design algorithm relying on ARS significantly outperforms the conventional hybrid BF benchmark algorithms and efficiently achieves the performance of the fully-digital BF with reduced number of radio frequency chains and energy consumption.
引用
收藏
页码:6141 / 6156
页数:16
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