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The Impact of Antenna Height Difference on the Performance of Downlink Cellular Networks

机译:天线高度差对下行蜂窝网络性能的影响

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Capable of significantly reducing cell size and enhancing spatial reuse, network densification is shown to be one of the most dominant approaches to expand network capacity. Due to the scarcity of available spectrum resources, nevertheless, the over-deployment of network infrastructures, e.g., cellular base stations (BSs), would strengthen the inter-cell interference as well, thus in turn deteriorating the system performance. On this account, we investigate the performance of downlink cellular networks in terms of user coverage probability (CP) and network spatial throughput (ST), aiming to shed light on the limitation of network densification. Notably, it is shown that both CP and ST would be degraded and even diminish to be zero when BS density is sufficiently large, provided that practical antenna height difference (AHD) between BSs and users is involved to characterize pathloss. Moreover, the results also reveal that the increase of network ST is at the expense of the degradation of CP. Therefore, to balance the tradeoff between user and network performance, we further study the critical density, under which ST could be maximized under the CP constraint. Through a special case study, it follows that the critical density is inversely proportional to the square of AHD. The results in this work could provide helpful guideline towards the application of network densification in the next-generation wireless networks.
机译:网络致密化能够显着减小小区大小并增强空间复用能力,是扩展网络容量的最主要方法之一。然而,由于可用频谱资源的稀缺,网络基础设施(例如,蜂窝基站(BS))的过度部署也将增强小区间干扰,从而反过来恶化系统性能。因此,我们根据用户覆盖概率(CP)和网络空间吞吐量(ST)来研究下行蜂窝网络的性能,旨在揭示网络致密化的局限性。值得注意的是,示出了当BS密度足够大时,CP和ST都将降级,甚至减小为零,只要涉及BS和用户之间的实际天线高度差(AHD)来表征路径损耗。此外,结果还表明,网络ST的增加是以CP降级为代价的。因此,为了平衡用户和网络性能之间的折衷,我们进一步研究了临界密度,在临界密度下,可以在CP约束下最大化ST。通过一个特殊的案例研究,可以得出结论,临界密度与AHD的平方成反比。这项工作的结果可以为在下一代无线网络中网络致密化的应用提供有用的指导。

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