Performance Analysis of Small Cell Networks Using Accurate Path Loss Model at 39 GHz

Yangying Zhang, Xiaojun Jing, Hui Gao, Bohan Li, Jianxiao Xie
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Abstract

In this paper, we apply an accurate millimeter wave (mmWave) path loss model, obtained from outdoor measurement operated at 39 GHz in Qingdao, China, into the stochastic geometry analysis to investigate the system performance of small cell networks (SCNs) with non-identical user equipment (UE) - base station (BS) antenna heights. The analytical expressions for coverage probability and outage probability are derived in detail, which are functions of BS density and absolute difference between the antenna heights of BS and UE. The analytical results of coverage probability and outage probability are verified through Monte Carlo simulation. Our study shows that as the SCNs become denser, the impact of antenna heights difference on coverage and outage probability is more significant.
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基于39 GHz精确路径损耗模型的小型蜂窝网络性能分析
在本文中,我们将一个精确的毫米波(mmWave)路径损耗模型应用到随机几何分析中,该模型来自中国青岛39ghz的户外测量,以研究具有不同用户设备(UE) -基站(BS)天线高度的小型蜂窝网络(SCNs)的系统性能。详细推导了覆盖概率和中断概率的解析表达式,它们是BS密度和BS与UE的天线高度绝对差的函数。通过蒙特卡罗仿真验证了覆盖概率和中断概率的分析结果。我们的研究表明,随着scn的密度增大,天线高度差对覆盖范围和中断概率的影响更为显著。
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