Power Allocation and Beamforming Design for IRS-aided Secure Directional Modulation Network

Fuente: arXiv
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Main Authors: Dong, Rongen, Shu, Feng, Zhou, Fuhui, Wu, Yongpeng, Wang, Jiangzhou
Format: Preprint
Published: 2023
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_version_ 1866913254152863744
author Dong, Rongen
Shu, Feng
Zhou, Fuhui
Wu, Yongpeng
Wang, Jiangzhou
author_facet Dong, Rongen
Shu, Feng
Zhou, Fuhui
Wu, Yongpeng
Wang, Jiangzhou
contents With the aim of boosting the security of the conventional directional modulation (DM) network, a secure DM network assisted by intelligent reflecting surface (IRS) is investigated in this paper. To maximize the secrecy rate (SR), we jointly optimize the power allocation (PA) factor, confidential message (CM) beamforming, artificial noise (AN) beamforming, and IRS reflected beamforming. To tackle the formulated problem, a maximizing SR with high-performance (Max-SR-HP) scheme is proposed, where the PA factor, CM beamforming, AN beamforming, and IRS phase shift matrix are derived by the derivative operation, generalized Rayleigh-Ritz, generalized power iteration, and semidefinite relaxation criteria, respectively. Given that the high complexity of the above scheme, a maximizing SR with low-complexity (Max-SR-LC) scheme is proposed, which employs the generalized leakage and successive convex approximation algorithms to derive the variables. Simulation results show that both the proposed schemes can significantly boost the SR performance, and are better than the equal PA, no IRS and random phase shift IRS schemes.
format Preprint
id arxiv_https___arxiv_org_abs_2312_15504
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Power Allocation and Beamforming Design for IRS-aided Secure Directional Modulation Network
Dong, Rongen
Shu, Feng
Zhou, Fuhui
Wu, Yongpeng
Wang, Jiangzhou
Information Theory
Signal Processing
With the aim of boosting the security of the conventional directional modulation (DM) network, a secure DM network assisted by intelligent reflecting surface (IRS) is investigated in this paper. To maximize the secrecy rate (SR), we jointly optimize the power allocation (PA) factor, confidential message (CM) beamforming, artificial noise (AN) beamforming, and IRS reflected beamforming. To tackle the formulated problem, a maximizing SR with high-performance (Max-SR-HP) scheme is proposed, where the PA factor, CM beamforming, AN beamforming, and IRS phase shift matrix are derived by the derivative operation, generalized Rayleigh-Ritz, generalized power iteration, and semidefinite relaxation criteria, respectively. Given that the high complexity of the above scheme, a maximizing SR with low-complexity (Max-SR-LC) scheme is proposed, which employs the generalized leakage and successive convex approximation algorithms to derive the variables. Simulation results show that both the proposed schemes can significantly boost the SR performance, and are better than the equal PA, no IRS and random phase shift IRS schemes.
title Power Allocation and Beamforming Design for IRS-aided Secure Directional Modulation Network
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2312.15504