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Robust Multi-Path Communications for UAVs in the Urban IoT

机译:适用于城市物联网中无人机的强大多路径通信

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Unmanned Aerial Vehicle (UAV) systems are being increasingly used in a broad range of scenarios and applications. However, their deployment in urban areas poses important technical challenges. One of the most prominent concerns is the robustness of communications between the ground stations and the UAVs in a highly dynamic and crowded spectrum. Indeed, competing data streams may create local or temporary congestion impairing the ground stations to control the UAVs. The main contribution of this paper is a robust multi-path communication framework for UAV systems. The framework continuously probes the performance of multiple wireless multi-hop paths from the ground stations to each UAV, and dynamically selects the path providing the best performance to support timely control. Numerical results, based on a real-world implementation and extensive field experimentation, demonstrate the ability of the proposed framework to provide robust control against exogenous interference and network congestion.
机译:无人驾驶飞行器(UAV)系统越来越多地用于广泛的情景和应用。然而,他们在城市地区部署构成了重要的技术挑战。最突出的担忧之一是在高度动态和拥挤的频谱中地站和无人机之间的通信的稳健性。实际上,竞争数据流可以创建损害地站的本地或临时拥塞以控制无人机。本文的主要贡献是用于UAV系统的强大的多路径通信框架。该框架连续探测从地站到每个UAV的多个无线多跳路径的性能,并动态选择提供最佳性能的路径来支持及时控制。基于真实世界实施和广泛的现场实验的数值结果证明了所提出的框架提供鲁棒控制免受外源干扰和网络拥塞的能力。

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