Performance Analysis of a Wireless Backhaul in a Three-Tier Hybrid Network With Directional Antennas

被引:2
|
作者
Shoukry, Hebatallah [1 ]
Balasubramanya, Naveen Mysore [2 ]
Vuppala, Satyanarayana [3 ]
Sellathurai, Mathini [1 ]
机构
[1] Heriot Watt Univ, Inst Sensors Signals & Syst, Edinburgh EH14 4AS, Midlothian, Scotland
[2] IIT Dharwad, Dept Elect Engn, Dharwad 580011, Karnataka, India
[3] United Technol Res Ctr, Cork T23 XN53, Ireland
基金
英国工程与自然科学研究理事会;
关键词
Directional antennas; heterogeneous networks; stochastic geometry; wireless backhaul; HETEROGENEOUS CELLULAR NETWORKS; STOCHASTIC GEOMETRY; MULTI-TIER; ASSOCIATION; ENERGY;
D O I
10.1109/ACCESS.2019.2895731
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In this paper, a three-tier hybrid cellular heterogeneous network is considered using the microwave (mu Wave) links for the first two tiers and millimeter (mmWave) links for the last tier. The two-tiers with mu Wave links form a wireless backhaul to the last tier with mmWave links. The main challenge in having a wireless backhaul is to suppress interference. Thus, we propose a novel and practical model where we can reuse the mu Wave infrastructure, but equip the BSs with directional antennas to have a robust wireless backhaul network. To solve the bottleneck rate problem, we assume that the rate required by the mmWave users is comparable to that offered by the mu Wave links. Different configurations based on the placement of the directional antennas at each tier are explored. The analysis of the key performance indicators, namely, the coverage probability, area spectral efficiency, and energy efficiency using the conventional minimum rate model, and the simulation results associated with these parameters are presented. In order to analyze this hybrid network with a wireless backhaul, an optimization problem for the overall area spectral efficiency and energy efficiency with respect to the optimal signal-to-interference ratio (SIR) threshold required for mu Wave and mmWave links is investigated. Results indicate that the optimal SIR threshold required for the mu Wave tiers (wireless backhaul) depends only on the path-loss exponent and that for the mmWave tier depends on the area of the line-of-sight region. Finally, instead of the conventional minimum rate model, we consider the average rate under coverage and show that the area spectral efficiency and energy efficiency are strictly decreasing functions with respect to the threshold, thereby concluding that they can be maximized by choosing the lowest possible SIR threshold available in the system.
引用
收藏
页码:18332 / 18344
页数:13
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