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Robust and Secure Wireless Communications via Intelligent Reflecting Surfaces

IEEE Journal on Selected Areas in Communications · 2020 · Vol. 38(11) · pp. 2637–2652
Xianghao YuDongfang XuYing SunDerrick Wing Kwan NgRobert Schober

Abstract

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.

Advanced Wireless Communication TechnologiesWireless Communication Security TechniquesOcular Disorders and TreatmentsArtificial noiseEavesdroppingComputer sciencePhysical layerOptimization problemWirelessBeamformingChannel state informationComputer networkConvex optimization

Funding

  • Alexander von Humboldt-Stiftung
  • University of New South Wales
  • China Scholarship Council
  • Australian Research Council
  • Digital Grid Futures Institute, University of New South Wales Canberra
Citations
810
FWCI
58.42
field-weighted impact
References
61
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Intelligent Reflecting Surface Enhanced Wireless Network via Joint Active and Passive Beamforming
IEEE Transactions on Wireless Communications · 2019 · 4,496 citations
Multicell MIMO Communications Relying on Intelligent Reflecting Surfaces
IEEE Transactions on Wireless Communications · 2020 · 1,079 citations
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