论文标题
具有天花板安装访问点的室内MMWave网络的性能分析
Performance Analysis of Indoor mmWave Networks with Ceiling-Mounted Access Points
论文作者
论文摘要
5G网络中增强的移动宽带用例的目的是为人口稠密的地区(例如城市中心,运输中心或会议中心)提供高容量的访问。毫米波通信是意识到目标的首选技术,但是由于室外到室内渗透率较弱,室外部署将不够,并且需要专用的室内部署。在本文中,我们研究了安装在天花板上的毫米波接入点的密集部署,定向天线向下指向地面上选定的斑点。在此设置中,信号传播主要受人体堵塞的限制。因此,我们开发了一个身体阻塞模型并得出阻塞概率的表达式。使用开发的表达式和我们的仿真框架,我们评估了致密性和身体阻塞对可实现性能的影响。我们发现,覆盖范围和区域光谱效率曲线在接入点密度方面都表现出非平凡的行为,并且存在最佳的梁宽密度构型,只能最大程度地提高覆盖范围或面积光谱效率。这种最佳配置会根据身体阻塞概率而变化,从而使网络设计人员仔细考虑其预期的应用和场景。
The objective of the Enhanced Mobile Broadband use case in 5G networks is to deliver high capacity access to densely populated areas, like city centres, transportation hubs or convention centres. Millimetre-wave communications are the go-to technology to realise that objective, yet due to weak outdoor-to-indoor penetration, outdoor deployments will not suffice and dedicated indoor deployments will be necessary. In this article, we study dense deployments of millimetre-wave access points mounted on the ceiling, with directional antennas pointing downwards to illuminate selected spots on the ground. In this setup, the signal propagation is primarily limited by human body blockages. Therefore, we develop a body blockage model and derive an expression for the probability of blockage. Using the developed expressions and our simulation framework, we assess the impact of densification and body blockage on the achievable performance. We find that both coverage and area spectral efficiency curves exhibit non-trivial behaviour with respect to the access point density and that there is an optimal beamwidth-density configuration that only maximises either coverage or area spectral efficiency. Such optimal configuration changes depending on the body blockage probability, leading to a necessity for network designers to carefully consider their intended application and scenario.