波束赋形
干扰
窃听
计算机科学
人为噪声
基站
信道状态信息
最优化问题
安全传输
数学优化
凸优化
无线
频道(广播)
凸性
计算机网络
传输(电信)
电信
数学
算法
发射机
正多边形
经济
物理
金融经济学
热力学
几何学
作者
Yun-Yu Sun,Kang An,Junshan Luo,Yimin Zhu,Gan Zheng,Symeon Chatzinotas
出处
期刊:IEEE Transactions on Vehicular Technology
[Institute of Electrical and Electronics Engineers]
日期:2021-10-01
卷期号:70 (10): 11017-11022
被引量:35
标识
DOI:10.1109/tvt.2021.3104580
摘要
Both the jammer and the eavesdropper pose severe threat to wireless communications due to the broadcast nature of wireless channels. In this paper, an intelligent reflecting surface (IRS) assisted secure communication system is considered, where a base station (BS) wishes to reliably convey information to a user, in the presence of both a jammer and an eavesdropper whose transmit informations are not completely known. Specifically, with the imperfect third-party node's channel state information (CSI) and no knowledge of the jammer's transmit beamforming, we aim to maximize the system achievable rate by jointly designing the BS's transmit beamforming and the IRS's reflect beamforming, while limiting the information leakage to the potential eavesdropper. Due to the non-convexity and intractability of the original problem induced by the incompleted information, we utilize the auxiliary variables, Cauchy-Schwarz inequality, and General Sign-Definiteness transformation to convert the original optimization problem into a tractable convex optimization problem, and then obtain the high-quality optimal solution by using the successive convex approximation and penalty convex concave procedure. Numerical simulations demonstrate the superiority of our proposed optimization algorithm compared with existing approaches, and also reveal the impact of key parameters on the achievable system performance.
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