This paper investigates the security enhancement of an intelligent reflecting surface (IRS) assisted non-orthogonal multiple access (NOMA) network, where a distributed IRS enabled NOMA transmission framework is proposed to serve users securely in the presence of a passive eavesdropper. Considering that eavesdropper's instantaneous channel state information (CSI) is challenging to acquire in practice, we utilize secrecy outage probability (SOP) as the security metric. A problem of maximizing the minimum secrecy rate among users, subject to the successive interference cancellation (SIC) decoding constraints and SOP constraints, by jointly optimizing transmit beamforming at the BS and phase shifts of IRSs, is formulated. For special case with a single-antenna BS, we derive the exact closed-form SOP expressions and propose a novel ring-penalty based successive convex approximation (SCA) algorithm to design power allocation and phase shifts jointly. While for the more general and challenging case with a multi-antenna BS, we adopt the Bernstein-type inequality to approximate the SOP constraints by a deterministic convex form. To proceed, an efficient alternating optimization (AO) algorithm is developed to solve the considered problem. Numerical results validate the advantages of the proposed algorithms over the baseline schemes. Particularly, two interesting phenomena on distributed IRS deployment are revealed: 1) the secrecy rate peak is achieved only when distributed IRSs share the reflecting elements equally; and 2) the distributed IRS deployment does not always outperform the centralized IRS deployment, due to the tradeoff between the number of IRSs and the reflecting elements equipped at each IRS.
翻译:本文调查了一个智能反射表面(IRS)辅助非垂直多重存取(NOMA)网络的安全增强问题,在该网络中,一个分布式IRS使诺马传输框架在被动窃听器面前为用户安全服务。考虑到窃听器的即时频道状态信息(CSI)在实践中很难获得,我们使用保密中断概率(SOP)作为安全衡量标准。在连续取消干扰(SIC)解码限制和SOP限制的情况下,一个在用户中最大限度地提高最低保密率的问题,在连续取消(SIC)稳定地解码限制和SOP限制的情况下,通过共同优化在BS的传送波形和IRS的阶段转移,来为用户安全地提供服务。对于单个保险监听器监听器监听器的瞬间状态信息(CSI),我们使用Bernstein型的不平等,通过不总是优化在BSOP的发送方式上传送信号,对于单调调局的部署速度(SARS)的每部调控式配置速度(SARS),对于S的配置速度(S),在Slentmin connalalal malistal listal lishal mal) laveild mal),我们使用两种算算法是在Slation 。