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Dense Small Cell Networks: From Noise-Limited to Dense Interference-Limited

机译:密集的小型电池网络:从噪声限制到密集的干扰 - 限制

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摘要

Considering both non-line-of-sight (NLoS) and line-of-sight (LoS) transmissions, the transitional behaviors from noise-limited regime to dense interference-limited regime have been investigated for the fifth generation (5G) small cell networks (SCNs). Besides, we identify four performance regimes based on base station (BS) density, i.e., 1) the noise-limited regime, 2) the signal-dominated regime, 3) the interference-dominated regime, and 4) the interference-limited regime. To characterize the performance regime, we propose a unified framework analyzing the future 5G wireless networks over generalized shadowing/fading channels, in which the user association schemes based on the strongest instantaneous received power and the strongest average received power can be studied, while NLoS/LoS transmissions and multi-slop path loss model are considered. Simulation results indicate that different factors, i.e., noise, desired signal, and interference, successively and separately dominate the network performance with the increase of BS density. Hence, our results shed new light on the design and management of SCNs in urban and rural areas with different BS deployment densities.
机译:考虑到非视线(NLOS)和视线(LOS)传输,已经研究了来自噪声限制的过渡行为,以便为第五代(5G)小型电池网络研究了密集的干扰限制。 (SCNS)。此外,我们识别基于基站(BS)密度,即1)噪声限制制度,2)信号主导的制度,3)干扰主导的制度和4)干扰限制的制度。为了表征性能制度,我们提出了一个统一的框架,分析了通过广义阴影/衰落通道的未来5G无线网络,其中可以研究基于最强的瞬时接收功率和最强的平均接收功率的用户关联方案,而NLO /考虑LOS传输和多斜坡路径损耗模型。模拟结果表明,不同的因素,即噪声,期望的信号和干扰,连续且单独地主导网络性能随着BS密度的增加。因此,我们的结果阐述了不同BS部署密度的城乡地区SCNS的设计和管理。

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