论文标题

通过固定翼无人机启用长MMWave航空回程链接:性能和设计

Enabling Long mmWave Aerial Backhaul Links via Fixed-Wing UAVs: Performance and Design

论文作者

Dabiri, Mohammad Taghi, Hasna, Mazen Omar, Zorba, Nizar, Khattab, Tamer

论文摘要

我们提出了一个固定机翼无人机(UAV)基于毫米的毫米波(MMWave)回程链路,该链接可作为具有成本效益且易于部署的解决方案,以将灾难或远程区域连接到最近的核心网络。首先,我们通过考虑了现实的物理参数的影响,例如无人机的圆形路径,飞行路径的临界点,障碍物的高度和位置,飞行高度,跟踪误差,无人机振动的严重性,实际的3D Antenna模式,MMMWave Alterceric Channel损失,温度和温度。其次,我们得出信噪比(SNR)度量的分布,该分布基于一系列Dirac Delta函数的总和。使用SNR分布,我们得出了封闭形式的表达式,以作为所有系统参数的函数的被考虑系统的中断概率和恒星能力。为了为更长的链路长度提供可接受的服务质量,我们将分析表达式扩展到多节层系统。通过蒙特 - 卡洛模拟验证了封闭形式表达式的准确性。最后,通过提供足够的仿真结果,我们研究了关键通道参数(例如天线模式增益和飞行路径)对所考虑系统性能的影响。我们仔细分析了这些参数之间的关系,以最大程度地提高平均通道容量。

We propose a fixed wing unmanned aerial vehicles (UAV)-based millimeter wave (mmWave) backhaul links, that is offered as a cost effective and easy to deploy solution, to connect a disaster or remote area to the nearest core network. First, we fully characterize the single relay fixed-wing UAV-based communication system by taking into account the effects of realistic physical parameters, such as the UAV's circular path, critical points of the flight path, heights and positions of obstacles, flight altitude, tracking error, the severity of UAV's vibrations, the real 3D antenna pattern, mmWave atmospheric channel loss, temperature and air pressure. Second, we derive the distribution of the signal-to-noise ratio (SNR) metric, which is based on the sum of a series of Dirac delta functions. Using the SNR distribution, we derive closed-form expressions for the outage probability and the ergodic capacity of the considered system as a function of all system parameters. To provide an acceptable quality of service for longer link lengths, we extend the analytical expressions to a multi-relay system. The accuracy of the closed-form expressions are verified by Monte-Carlo simulations. Finally, by providing sufficient simulation results, we investigate the effects of key channel parameters such as antenna pattern gain and flight path on the performance of the considered system; and we carefully analyze the relationships between these parameters in order to maximize the average channel capacity.

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