Phase Shift Matrix Optimization for IRS-Aided Legitimate Monitoring

Meng Wang, Qinghe Du
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Abstract

This paper studies wireless covert monitoring technologies, where multiple legitimate monitors (LMs) make use of intelligent reflecting surface (IRS) to sustainably intercept information sent from a suspicious transmitter (ST) to a suspicious receiver (SR). In particular, we propose an IRS-aided active monitoring scheme aligning with the regular two-phase transmissions between the ST and SR. In the pilot-transmission (PT) phase, LMs adopt a pilot spoofing strategy, where LMs control an IRS to reflect pilot signals sent by the SR, leading the ST's channel estimation towards LMs' direction. In the data-transmission (DT) phase, the IRS is controlled to reflect the ST's signals in a way that the LMs' received signal-to-noise ratios (SNR) are optimized, while helping maintain the SR's received SNR beyond a certain threshold to achieve sustainable monitoring. We formulate a phase-shift-matrix optimization problem over PT and DT phases. The minorization-maximization (MM) algorithm was applied to deal with the non-convex optimization such that we can efficiently obtain the optimized phase-shift matrices. Simulation results presented demonstrate the SNR gain improvement and monitoring range expansion introduced by our proposed scheme over the traditional passive monitoring approach.
irs辅助合法监测的相移矩阵优化
本文研究了无线隐蔽监控技术,其中多个合法监视器(lm)利用智能反射面(IRS)持续拦截从可疑发射器(ST)发送到可疑接收器(SR)的信息。特别是,我们提出了一种IRS辅助的主动监测方案,该方案与ST和SR之间的常规两相传输相一致。在导频传输(PT)阶段,lm采用导频欺骗策略,其中lm控制IRS以反映SR发送的导频信号,将ST的信道估计引向lm的方向。在数据传输(DT)阶段,IRS被控制以反映ST的信号,从而优化LMs的接收信噪比(SNR),同时帮助将SR的接收信噪比维持在一定阈值以上,以实现可持续监测。我们提出了PT和DT相的相移矩阵优化问题。采用最小-最大化(MM)算法处理非凸优化问题,可以有效地得到优化后的相移矩阵。仿真结果表明,与传统的无源监测方法相比,该方案提高了信噪比增益,扩大了监测范围。
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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