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Energy Efficiency Maximization in mmWave Wireless Networks with 3D Beamforming

Authors
Baianifar, MahdiRazavizadeh, S. MohammadAkhlaghpasand, HosseinLee, Inkyu
Issue Date
Apr-2019
Publisher
KOREAN INST COMMUNICATIONS SCIENCES (K I C S)
Keywords
3D beamforming; blockage effect; coverage probability; energy efficiency; heterogeneous network (HetNet); mmWave network; stochastic geometry; tilt angle optimization
Citation
JOURNAL OF COMMUNICATIONS AND NETWORKS, v.21, no.2, pp.125 - 135
Indexed
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF COMMUNICATIONS AND NETWORKS
Volume
21
Number
2
Start Page
125
End Page
135
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/66516
DOI
10.1109/JCN.2019.000011
ISSN
1229-2370
Abstract
In this paper, we address the problem of 3D beamforming (3DBF) in millimeter wave (mmWave) wireless networks. In particular, we study the impact of base station (BS) antenna tilt angle optimization on the energy efficiency (EE) of mmWave networks under two different scenarios: a homogeneous network consisting of multiple macro base stations (MBSs), and a heterogeneous network where several femto base stations are added within the coverage areas of the MBSs. First, by adopting a stochastic geometry approach, we analyze the coverage probability of both scenarios that incorporate 3DBF. Then, we derive the EE of the networks as a function of the MBS antenna tilt angle. Next, optimization problems are formulated to maximize the EE of the networks by optimizing the tilt angle. Since the computational complexity of the optimal solution is very high, near-optimal low-complexity methods are proposed for solving the optimization problems. Simulation results show that in the mmWave networks, the 3DBF technique with optimized tilt angle can considerably improve the EE of the network. Also, the proposed low complexity approach presents a performance close to the optimal solution but with a significant reduced complexity.
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