Covert transmission is studied for an intelligent reflecting surface (IRS) aided communication system, where Alice aims to transmit messages to Bob without being detected by the warden Willie. Specifically, an IRS is used to increase the data rate at Bob under a covert constraint. For the considered model, when Alice is equipped with a single antenna, the transmission power at Alice and phase shifts at the IRS are jointly optimized to maximize the covert transmission rate with either instantaneous or partial channel state information (CSI) of Willie's link. In addition, when multiple antennas are deployed at Alice, we formulate a joint transmit beamforming and IRS phase shift optimization problem to maximize the covert transmission rate. One optimal algorithm and two low-complexity suboptimal algorithms are proposed to solve the problem. Furthermore, for the case of imperfect CSI of Willie's link, the optimization problem is reformulated by using the triangle and the Cauchy-Schwarz inequalities. The reformulated optimization problems are solved using an alterative algorithm, semidefinite relaxation (SDR) and Gaussian randomization techniques. Finally, simulations are performed to verify our analysis. The simulation results show that an IRS can degrade the covert transmission rate when Willie is closer to the IRS than Bob.
翻译:为智能反射表面(IRS)辅助通信系统研究隐性传输,爱丽丝的目的是向鲍勃传送信息,而没有被典狱长威利探测到。具体地说,使用IRS来提高鲍勃在隐蔽限制下的数据率。对于考虑的模型,当爱丽丝配备了一个单一天线时,爱丽丝的传输力和IRS的相位转移功能被联合优化,以便利用威利链接的瞬时或部分频道状态信息最大限度地扩大隐性传输率。此外,当在爱丽丝部署多个天线时,我们设计了一个联合传送波形成型和IRS阶段转换优化问题,以最大限度地扩大隐蔽传输率。最后,提出了一种最佳算法和两种低兼容性亚最佳算法来解决问题。此外,对于不完善的威利链接的CSI,优化问题通过三角和Couchy-Schwarz的不均匀状态信息来重新确定。再优化问题通过一种变换算法、半确定性放松(SDR)和高调Isian随机化技术来解决。最后,将进行模拟,以便模拟到更精确地显示IRS的变压。