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Robust Transmission Design for Intelligent Reflecting Surface-Aided Secure Communication Systems With Imperfect Cascaded CSI

机译:智能反射表面辅助通信系统具有不完美级联CSI的鲁棒传输设计

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In this paper, we investigate the design of robust and secure transmission in intelligent reflecting surface (IRS) aided wireless communication systems. In particular, a multi-antenna access point (AP) communicates with a single-antenna legitimate receiver in the presence of multiple single-antenna eavesdroppers, where the artificial noise (AN) is transmitted to enhance the security performance. Besides, we assume that the cascaded AP-IRS-user channels are imperfect due to the channel estimation error. To minimize the transmit power, the beamforming vector at the transmitter, the AN covariance matrix, and the IRS phase shifts are jointly optimized subject to the outage rate probability constraints under the statistical cascaded channel state information (CSI) error model. To handle the resulting non-convex optimization problem, we first approximate the outage rate probability constraints by using the Bernstein-type inequality. Then, we develop a suboptimal algorithm based on alternating optimization, the penalty-based and semidefinite relaxation methods. Simulation results reveal that the proposed scheme significantly reduces the transmit power compared to other benchmark schemes.
机译:在本文中,我们研究了智能反射表面(IRS)辅助无线通信系统中的鲁棒和安全传输的设计。特别地,在多个单天线窃听者的存在下,多天线接入点(AP)与单天线合法接收器通信,其中发送人工噪声(AN)以增强安全性能。此外,我们假设由于信道估计误差,级联的AP-IRS用户通道是不完美的。为了最小化发射功率,发送器处的波束形成矢量,协方差矩阵和IRS相移是共同优化的,其受到统计级联信道状态信息(CSI)错误模型的中断率概率约束。为了处理产生的非凸优化问题,我们首先使用伯尔尼斯坦型不等式来估计中断率概率约束。然后,我们基于交替优化,基于惩罚和半纤维放松方法开发了次优算法。仿真结果表明,与其他基准方案相比,所提出的方案显着降低了发射功率。

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