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Robust and Secure Wireless Communications via Intelligent Reflecting Surfaces

机译:通过智能反射曲面鲁棒和安全的无线通信

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摘要

In this paper, intelligent reflecting surfaces (IRSs) are employed to enhance the physical layer security in a challenging radio environment. In particular, a multi-antenna access point (AP) has to serve multiple single-antenna legitimate users, which do not have line-of-sight communication links, in the presence of multiple multi-antenna potential eavesdroppers whose channel state information (CSI) is not perfectly known. Artificial noise (AN) is transmitted from the AP to deliberately impair the eavesdropping channels for security provisioning. We investigate the joint design of the beamformers and AN covariance matrix at the AP and the phase shifters at the IRSs for maximization of the system sum-rate while limiting the maximum information leakage to the potential eavesdroppers. To this end, we formulate a robust non-convex optimization problem taking into account the impact of the imperfect CSI of the eavesdropping channels. To address the non-convexity of the optimization problem, an efficient algorithm is developed by capitalizing on alternating optimization, a penalty-based approach, successive convex approximation, and semidefinite relaxation. Simulation results show that IRSs can significantly improve the system secrecy performance compared to conventional architectures without IRS. Furthermore, our results unveil that, for physical layer security, uniformly distributing the reflecting elements among multiple IRSs is preferable over deploying them at a single IRS.
机译:在本文中,采用智能反射表面(IRS)来增强具有挑战性的无线电环境中的物理层安全性。特别地,在存在信道状态信息(CSI的多个多天线电位窃听者的存在下,多天线接入点(AP)必须提供不具有视线通信链路的多个单天线合法用户。 )不是完全众所周知的。从AP传输人工噪声(AN)以故意损害窃听信道以进行安全供应。我们研究了AP的波束形成器和协方差矩阵的关节设计以及IRS的相移器,用于最大化系统的和速率,同时将最大信息限制到电位窃听者。为此,我们制定了强大的非凸优化问题,考虑了窃听渠道的不完美CSI的影响。为了解决优化问题的非凸性,通过大写交替优化,基于惩罚的方法,连续凸起近似和半纤维放松来开发一种有效的算法。仿真结果表明,与没有IR的传统架构相比,IRS可以显着提高系统保密性能。此外,我们的结果揭示了用于物理层安全性,均匀地分布多个IRS之间的反射元件优选在单个IRS处部署它们。

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