A Proposed Elevation Angle Model for Small Cell Environments

Qi Hong, Haonan Hu, Hao Li, Hui Zheng, Baoling Zhang, Jie Zhang
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Abstract

The deployment of small cells is one of the key enabling technologies for the next generation mobile communication. Due to the short coverage of small cell, the elevation angle, which is ignored in long distance transmission model, should be taken into account in channel modelling. In this paper, we developed a geometrically based single bounce (GBSB) channel model for a small cell mobile environment which assumes that scattering objects are located uniformly within an ellipse around the mobile station (MS). The closed-form expression for joint and marginal probability density function (PDF) of elevation angle of departure (EAOD) is derived and validated by Monte Carlo simulation. With our derived PDF expression, the impact of parameters such as the distance between the base station (BS) and the MS, the height of the BS and the size of scatterers on the elevation angle are also discussed.
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一种小单元环境的仰角模型
小型基站的部署是下一代移动通信的关键使能技术之一。由于小基站覆盖范围短,在信道建模中应考虑到在长距离传输模型中忽略的仰角。在本文中,我们建立了一个基于几何的单弹跳(GBSB)信道模型,该模型假设散射目标均匀地位于移动站(MS)周围的椭圆内。导出了仰角出发(EAOD)联合和边际概率密度函数(PDF)的封闭表达式,并通过蒙特卡罗仿真进行了验证。利用导出的PDF表达式,讨论了基站与MS之间的距离、BS的高度和散射体的大小等参数对仰角的影响。
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