2021
DOI: 10.1109/lcomm.2020.3034131
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BD-UCD-Based Nonlinear Hybrid Precoding for Millimeter Wave Massive Multiuser MIMO Systems

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Cited by 9 publications
(5 citation statements)
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“…Figure 6 and Figure 7 show the impact of signal‐to‐noise ratio (SNR), where the Optimal full‐digital that is obtained by the singular vectors from the SVD of the channel matrix bold-italicH$$ \boldsymbol{H} $$, 28 TH hybrid precoding algorithm, 15 Hybrid THP algorithm, 17 Hybrid BD‐GMD TH precoding algorithm, 18 the CA‐based hybrid precoding algorithm 9 and the MU‐SIC hybrid precoding algorithm 7 as comparisons. The simulation results show that the energy efficiency and spectral efficiency of the proposed THP‐SC algorithm are higher than those of the comparison algorithm.…”
Section: Simulation Resultsmentioning
confidence: 99%
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“…Figure 6 and Figure 7 show the impact of signal‐to‐noise ratio (SNR), where the Optimal full‐digital that is obtained by the singular vectors from the SVD of the channel matrix bold-italicH$$ \boldsymbol{H} $$, 28 TH hybrid precoding algorithm, 15 Hybrid THP algorithm, 17 Hybrid BD‐GMD TH precoding algorithm, 18 the CA‐based hybrid precoding algorithm 9 and the MU‐SIC hybrid precoding algorithm 7 as comparisons. The simulation results show that the energy efficiency and spectral efficiency of the proposed THP‐SC algorithm are higher than those of the comparison algorithm.…”
Section: Simulation Resultsmentioning
confidence: 99%
“…With using the singular value threshold shrinkage, the optimization problem ( 14) can be solved optimally by the following theorem. 16) and the singular value shrinkage operator of (17), the optimization problem of ( 14) can be solved simplistically by singular value threshold shrinkage (SVS) method. The formula can be reduced to R = log 2 (|I +…”
Section: Algorithm Optimizationmentioning
confidence: 99%
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“…, where √ β k indicates large-scale path fading and Ḣk indicates the normalized channel matrix for the k-th user, satisfying E Ḣk 2 F = N t N r . In the mmWave channel, the main feature is the limited number of scattering clusters in the propagation path [34][35][36]. To characterize the limited scattering property of mmWave channels, the Saleh-Valenzuela geometric model is adopted in this paper [37,38].…”
Section: Channel Modelmentioning
confidence: 99%