Secure Transmission for Intelligent Reflecting Surface-Assisted mmWave and Terahertz Systems

波束赋形 计算机科学 基站 安全传输 发射机功率输出 坐标下降 半定规划 传输(电信) 计算机网络 电子工程 发射机 频道(广播) 电信 数学优化 算法 工程类 数学
作者
Jingping Qiao,Mohamed‐Slim Alouini
出处
期刊:IEEE Wireless Communications Letters [Institute of Electrical and Electronics Engineers]
卷期号:9 (10): 1743-1747 被引量:96
标识
DOI:10.1109/lwc.2020.3003400
摘要

This letter focuses on the secure transmission for an intelligent reflecting surface (IRS)-assisted millimeter-wave (mmWave) and terahertz (THz) system, in which a base station (BS) communicates with its destination via an IRS, in the presence of a passive eavesdropper. To maximize the system secrecy rate, the transmit beamforming at the BS and the reflecting matrix at the IRS are jointly optimized with transmit power and discrete phase-shift constraints. It is first proved that the beamforming design is independent of the phase shift design under the rank-one channel assumption. The formulated non-convex problem is then converted into two subproblems, which are solved alternatively. Specifically, the closed-form solution of transmit beamforming at the BS is derived, and the semidefinite programming (SDP)-based method and element-wise block coordinate descent (BCD)-based method are proposed to design the reflecting matrix. The complexity of our proposed methods is analyzed theoretically. Simulation results reveal that the proposed IRS-assisted secure strategy can significantly boost the secrecy rate performance, regardless of eavesdropper's locations (near or blocking the confidential beam).
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