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Coverage and rate analysis in the uplink of millimeter wave cellular networks with fractional power control

机译:具有分数功率控制的毫米波蜂窝网络上行链路的覆盖和速率分析

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摘要

In this paper, using the concept of stochastic geometry, we present an analytical framework to evaluate the signal-to-interference-and-noise-ratio (SINR) coverage in the uplink of millimeter wave cellular networks. By using a distance-dependent line-of-sight (LOS) probability function, the location of LOS and non-LOS users are modeled as two independent non-homogeneous Poisson point processes, with each having a different pathloss exponent. The analysis takes account of per-user fractional power control (FPC), which couples the transmission of users based on location-dependent channel inversion. We consider the following scenarios in our analysis: (1) pathloss-based FPC (PL-FPC) which is performed using the measured pathloss and (2) distance-based FPC (D-FPC) which is performed using the measured distance. Using the developed framework, we derive expressions for the area spectral efficiency. Results suggest that in terms of SINR coverage, D-FPC outperforms PL-FPC scheme at high SINR where the future networks are expected to operate. It achieves equal or better area spectral efficiency compared with the PL-FPC scheme. Contrary to the conventional ultra-high frequency cellular networks, in both FPC schemes, the SINR coverage decreases as the cell density becomes greater than a threshold, while the area spectral efficiency experiences a slow growth region.
机译:在本文中,使用随机几何的概念,我们提出了一个分析框架,以评估毫米波蜂窝网络的上行链路中的信噪比(SINR)覆盖范围。通过使用依赖于距离的视线(LOS)概率函数,将LOS和非LOS用户的位置建模为两个独立的非均匀泊松点过程,每个过程具有不同的路径损耗指数。该分析考虑了每个用户的分数功率控制(FPC),它基于位置相关的信道倒置来耦合用户的传输。我们在分析中考虑以下情形:(1)使用测得的路径损耗执行基于路径损耗的FPC(PL-FPC),以及(2)使用测得的距离执行基于距离的FPC(D-FPC)。使用开发的框架,我们导出了区域光谱效率的表达式。结果表明,就SINR覆盖而言,在未来网络有望运行的高SINR情况下,D-FPC的性能优于PL-FPC方案。与PL-FPC方案相比,它可实现相等或更好的区域光谱效率。与常规的超高频蜂窝网络相反,在两种FPC方案中,当单元密度变得大于阈值时,SINR覆盖率会降低,而区域频谱效率会经历缓慢的增长区域。

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