2022
DOI: 10.1049/cmu2.12330
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Physical layer authentication for 5G/6G millimeter wave communications by using channel sparsity

Abstract: This paper proposes a comprehensive study for the physical layer channel based authentication (PLA) designs in mmWave communications, which reveals the principles that how does the sparse properties of mmWave channel can benefit the PLA designs and performance. First, by fully investigating the channel perturbations of mmWave channel caused by the environmental changes within the channel coherence time, the generalized detection designs are investigated for mmWave channels. In general, it shows that the mmWave… Show more

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Cited by 4 publications
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“…The findings also revealed the impact of different UAV height regimes on the coverage probability. Moreover, Tang and Wen [37], discussed the use of mmWave in their published paper in 2022 "Physical layer authentication for 5G/6G millimeter wave communications by using channel sparsity", the study shows the mmWave channel perturbations that will degrade the detection performance.…”
Section: Fig 10 Clos and Nlos Microwave Backhaul [28] 42 Mmwave Backhaulmentioning
confidence: 99%
“…The findings also revealed the impact of different UAV height regimes on the coverage probability. Moreover, Tang and Wen [37], discussed the use of mmWave in their published paper in 2022 "Physical layer authentication for 5G/6G millimeter wave communications by using channel sparsity", the study shows the mmWave channel perturbations that will degrade the detection performance.…”
Section: Fig 10 Clos and Nlos Microwave Backhaul [28] 42 Mmwave Backhaulmentioning
confidence: 99%