Resource Allocation For Secure Irs-Assisted Multiuser Miso Systems

2019 IEEE GLOBECOM WORKSHOPS (GC WKSHPS)(2019)

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摘要
In this paper, we study resource allocation design for secure communication in intelligent rellecting surface (IRS)-assisted multiuser multiple-input single-output (MISO) communication systems. To enhance physical layer security, artificial noise (AN) is transmitted from the base station (BS) to deliberately impair the channel of an eavesdropper. In particular, we jointly optimize the phase shift matrix at the IRS and the beamforming vectors and AN covariance matrix at the BS for maximization of the system sum secrecy rale. To handle the resulting non-convex optimization problem, we develop an efficient suboptimal algorithm based on alternating optimization, successive convex approximation, semidefinite relaxation, and manifold optimization. Our simulation results reveal that the proposed scheme substantially improves the system sum secrecy rate compared to two baseline schemes.
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关键词
secure IRS-assisted multiuser MISO systems,resource allocation design,secure communication,physical layer security,artificial noise,base station,BS,phase shift matrix,nonconvex optimization problem,alternating optimization,manifold optimization,intelligent reflecting surface-assisted multiuser multiple-input single-output communication systems,beamforming vectors,AN covariance matrix,system sum secrecy rate maximization,efficient suboptimal algorithm,successive convex approximation,semidefinite relaxation,BS
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