Department of Electrical Engineering, KU Leuven, 3000 Leuven, Belgium.
Sensors (Basel). 2018 Dec 6;18(12):4311. doi: 10.3390/s18124311.
Cellular connectivity for UAV systems is interesting because it promises coverage in beyond visual line of sight scenarios. Inter-cell interference has been shown to be the main limiting factor at high altitudes. Using a realistic 3D simulator model, with real base station locations, this study confirms that UAVs at high altitudes suffer from significant interference, resulting in a worse coverage compared to ground users. When replacing the existing base stations by mmWave cells, our results indicate that ground coverage is decreased to only 90%, while UAVs just above rooftop level have a coverage probability of 100%. However, UAVs at higher altitude still suffer from excessive interference. Beamforming has the potential to improve mmWave link budget and to decrease interference and is for this reason a promising technology for ensuring connectivity to aerial users.
无人机系统的蜂窝连接很有趣,因为它有望在超视距场景中提供覆盖。已经证明,小区间干扰是高空的主要限制因素。本研究使用具有真实基站位置的现实 3D 模拟器模型,证实了高空无人机确实会受到严重干扰,与地面用户相比,覆盖范围更差。当用毫米波小区替换现有的基站时,我们的结果表明,地面覆盖范围下降到仅 90%,而刚好在屋顶上方的无人机的覆盖概率为 100%。然而,高空无人机仍受到过度干扰的困扰。波束赋形有可能改善毫米波链路预算,减少干扰,因此是确保空中用户连接的一项很有前途的技术。