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Coverage and Power Gain of Aerial Versus Terrestrial Base Stations

机译:空中对地面基站的覆盖范围和功率增益

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Aerial stations have been recently recognized as an attractive alternative to provide wireless services to terrestrial users thanks to their superior coverage capability. In this paper, the coverage and power gain that can be achieved by a drone with respect to a terrestrial base station are studied. We address the problem by characterizing the coverage area based on the network outage probability, taking into account the height depending fading and path loss exponent that characterize air-to-ground wireless links. Results show that there exist a unique optimal altitude that provides the largest coverage and power gain, which strikes a fine balance between the path loss, due to the higher altitude, and a reduced influence of the multipath scattering. While numerical evaluations show that even at low altitudes the network gains up to 4x coverage or 20 dB power, the gain achieved at optimal altitude can be higher.
机译:由于空中站具有出色的覆盖能力,它们最近被公认为是向地面用户提供无线服务的有吸引​​力的替代方案。在本文中,研究了无人机相对于地面基站可以实现的覆盖范围和功率增益。我们通过基于网络中断概率来表征覆盖区域来解决此问题,同时考虑到空对地无线链路的高度依赖性衰落和路径损耗指数。结果表明,存在一个独特的最佳高度,该高度可提供最大的覆盖范围和功率增益,从而在由于较高的高度而导致的路径损耗与减少的多径散射影响之间取得了很好的平衡。尽管数值评估表明,即使在低海拔地区,网络也能获得高达4倍的覆盖范围或20 dB的功率,但在最佳高度下所获得的增益可能更高。

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