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UAV Mobility model for dynamic UAV-to-car communications in 3D environments

机译:在3D环境中动态无人机通信的无人机移动模型

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摘要

In scenarios where there is a lack of reliable infrastructures to support car-to-car communications, Unmanned Aerial Vehicles (UAVs) can be deployed as mobile infrastructures. However, the UAVs should be deployed at adequate location and heights to maintain the coverage throughout time as the irregularities of the terrain may have a significant impact on the radio signals sent to distribute information. So, flight altitude and location should be constantly adjusted in order to avoid hilly or mountainous terrains that might hinder the Line-of-Sight (LOS). In this paper, we propose a three-dimensional mobility model to define the movement of the UAV so as to maintain good coverage levels in terms of communications with moving ground vehicles by taking into account the elevation information of the Earth's surface and the signal power towards the different vehicles. The results showed that our proposed model is able to extend the times with connectivity between the UAV and the cars compared to a simpler two-dimensional model, which never considers the altitude, and a static model, which maintains the same UAV position from the beginning to the end of the experiment. (c) 2020 Elsevier B.V. All rights reserved.
机译:在缺乏可靠的基础设施来支持汽车到汽车通信的情况下,无人驾驶飞行器(无人机)可以部署为移动基础设施。然而,在充足的位置和高度时,应该部署无人机,以保持覆盖范围,随着地形的不规则可能对发送以分配信息的无线电信号产生显着影响。因此,应该不断调整飞行高度和位置,以避免可能阻碍视线(LOS)的丘陵或山区地形。在本文中,我们提出了一种三维移动模型来定义UAV的运动,以便通过考虑地球表面的高度信息和向外朝向移动地面车辆的通信来保持良好的覆盖水平。不同的车辆。结果表明,与更简单的二维模型相比,我们所提出的模型能够延长无人机和汽车之间的连接,从未考虑高度和静态模型,可以从开头维护相同的UAV位置和静态模型到实验结束。 (c)2020 Elsevier B.v.保留所有权利。

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