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Path Loss Measurement and Modeling for Low-Altitude UAV Access Channels

机译:低空无人机访问通道的路径损耗测量和建模

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Connecting unmanned aerial vehicles (UAVs) by using cellular networks can significantly expand the civil applications of UAVs, due to much a larger connectivity range and low cost. However, the low-altitude air-to-ground (ATG) channels are different from the traditional terrestrial mobile access channels, and hence need to be characterized specifically. In this paper, a measurement campaign and modeling of the aerial access channels between a UAV and base station (BS) in the typical urban macro-cell (UMa) and rural macro-cell (RMa) scenarios are presented. The channels were sounded at 2.412 GHz and 919 MHz with the horizontal ranges of 420 meters and 10 kilometers, respectively, in the two scenarios. The transmitter equipped with two omnidirectional antennas was fixed on a fourrotor UAV which flew horizontally at various altitudes from 25 to 150 meters. The receiver was installed on the top of five-storey buildings to emulate a BS. The path loss (PL) was measured and the statistical models have been proposed which are based on the corresponding 3GPP territorial channel models but adjusted by adding correction factors (CFs). The CF is relevant to the UAV height in the UMa scenario. For the RMa scenario there is a breaking point with respect to the horizontal distance and hence a segmented function for the CF is proposed. The new PL models can help to establish the ATG channel models and support the design of air-borne access technologies for the LTE networks.
机译:通过使用蜂窝网络连接无人飞行器(UAV)可以大大扩展无人飞行器的民用应用,这是因为它具有更大的连接范围和较低的成本。但是,低空空对地(ATG)通道与传统的地面移动接入通道不同,因此需要进行特殊表征。本文介绍了在典型的城市宏小区(UMa)和农村宏小区(RMa)情况下,无人机与基站(BS)之间的空中接入信道的测量活动和建模。在这两种情况下,声道的声音分别为2.412 GHz和919 MHz,水平范围分别为420米和10公里。配备有两个全向天线的发射器固定在四旋翼无人机上,该无人机在25至150米的不同高度水平飞行。接收器安装在五层建筑物的顶部,以模拟BS。测量了路径损耗(PL),并提出了基于相应的3GPP领土信道模型但可通过添加校正因子(CF)进行调整的统计模型。 CF与UMa场景中的无人机高度有关。对于RMa场景,相对于水平距离存在一个断点,因此提出了CF的分段函数。新的PL模型可以帮助建立ATG信道模型,并支持LTE网络的机载接入技术的设计。

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