Rate Maximization for Active-IRS-Aided Secure Communication Networks

Yue Li, Fei Wang
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引用次数: 1

Abstract

We develop a secure communication scheme for an active intelligent reflecting surface (IRS) aided wireless network to maximize the mobile users' (MUs') transmission rate, where a multiple antenna base station (BS) transmits confidential information to MUs with the assistance of an active IRS. First, we formulate a rate maximization problem by jointly optimizing the transmission beamforming vectors, the IRS's phase-shifts and amplification-coefficients, and the system channel bandwidth allocation coefficients. Since the formulated optimization problem is non-convex with multiple coupled variables, we first adopt the block coordinate descending (BCD) method to decompose the formulated non-convex optimization problem into several subproblems, and then use the sequential convex approximation (SCA) method to transform the non-convex subproblems into the convex problems. Then, we can use CVX to solve them. Finally, the proposed scheme is verified by numerical analysis, which show that compared with the baseline scheme with passive IRS, when the noise power at the active IRS is much smaller than that at the MUs, our proposed scheme can achieve much larger transmission rates by using the active IRS even with a small number of reflecting elements.
主动irs辅助安全通信网络的速率最大化
为了最大限度地提高移动用户(MUs)的传输速率,我们开发了一种用于有源智能反射面(IRS)辅助无线网络的安全通信方案,其中多天线基站(BS)在有源IRS的帮助下向移动用户(MUs)传输机密信息。首先,我们通过联合优化传输波束形成矢量、IRS相移和放大系数以及系统信道带宽分配系数来制定速率最大化问题。由于公式化优化问题是具有多耦合变量的非凸问题,首先采用分块坐标下降法(BCD)将公式化非凸优化问题分解为若干子问题,然后采用序贯凸逼近法(SCA)将非凸子问题转化为凸问题。然后,我们可以使用CVX来求解它们。最后,通过数值分析对所提方案进行了验证,结果表明,与无源IRS基准方案相比,当有源IRS处的噪声功率远小于最小值时,即使反射元件数量较少,所提方案也能实现更大的传输速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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