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Optimal Base Station Antenna Downtilt in Downlink Cellular Networks

机译:下行蜂窝网络中的最佳基站天线下倾角

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Very recent studies showed that the area spectral efficiency (ASE) of downlink cellular networks will continuously decrease and finally crash to zero as the base station (BS) density increases toward infinity if the absolute height difference between BS antenna and user equipment antenna is larger than zero. Such a phenomenon is referred to as the ASE crash. We revisit this issue by considering optimizing the BS antenna downtilt in cellular networks. It is common to adjust antenna pattern to tune the direction of the vertical beamforming and thus increasing received signal power and/or reducing inter-cell interference power to improve network performance. This paper focuses on investigating the relationship between the BS antenna downtilt and the downlink network performance in terms of the coverage probability and the ASE. Our results reveal an interesting find that there exists an optimal antenna downtilt to achieve the maximum coverage probability for each BS density. Numerically solvable expressions are derived for such optimal antenna downtilt, which is a function of the BS density. Our numerical results show that after applying the optimal antenna downtilt, the network performance can be significantly improved, and hence the ASE crash can be delayed by nearly one order of magnitude in terms of the BS density. Our results also give guidance on setting the optimum downtilt angle to maximize network performance given a fixed BS density.
机译:最近的研究表明,如果基站天线和用户设备天线之间的绝对高度差大于BS,则随着基站(BS)密度朝着无穷大的方向增加,下行蜂窝网络的区域频谱效率(ASE)将连续下降,最终崩溃为零。零。这种现象称为ASE崩溃。我们通过考虑优化蜂窝网络中的BS天线下倾来重新审视此问题。通常调整天线方向图来调整垂直波束形成的方向,从而增加接收信号功率和/或减少小区间干扰功率以改善网络性能。本文着重从覆盖概率和ASE角度研究BS天线下倾角与下行链路网络性能之间的关系。我们的结果揭示了一个有趣的发现,即存在一个最佳的天线下倾角,以实现每个BS密度的最大覆盖概率。对于这种最佳天线下倾,得出了数字可解表达式,它是BS密度的函数。我们的数值结果表明,在应用最佳天线下倾角之后,网络性能可以得到显着改善,因此就BS密度而言,ASE崩溃可以延迟近一个数量级。我们的结果还为设置最佳下倾角提供了指导,以在固定BS密度的情况下最大化网络性能。

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