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Low-Delay Broadband Satellite Communications with High-Altitude Unmanned Aerial Vehicles

机译:高空无人飞行器的低延迟宽带卫星通信

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The large number of users and the long propagation delay of communication satellites make it difficult to deploy a random access scheme that performs well in terrestrial networks. The aim of this paper is to demonstrate that a relay architecture with unmanned aerial vehicles (UAV) between the ground and satellites can facilitate satellite access with a low overhead. We consider a TDMA-based two-level relay structure, in which users transmit data to UAVs through a random access scheme, and the UAVs forward it to the satellite with either a coordinated or uncoordinated access scheme. We show that the coordinated access for the UAV-to-satellite links can substantially improve the throughput and delay performance. We conclude that a proper scheme for resource allocation between ground-to-UAVs and UAVs-to-satellite is critical to optimize the relay network, which includes the UAV altitude, and should be based on traffic demand and the number of UAVs deployed.
机译:用户数量众多,通信卫星的传播延迟长,因此很难部署在陆地网络中表现良好的随机接入方案。本文的目的是证明在地面和卫星之间具有无人飞行器(UAV)的中继体系结构可以以较低的开销促进卫星的访问。我们考虑一种基于TDMA的两级中继结构,在这种结构中,用户通过随机访问方案将数据传输到UAV,而UAV使用协调或不协调的访问方案将其转发到卫星。我们表明,UAV到卫星链路的协调访问可以大大提高吞吐量和延迟性能。我们得出的结论是,对地面到无人机和无人机到卫星之间的资源分配的适当方案对于优化包括无人机高度在内的中继网络至关重要,并且应该基于流量需求和部署的无人机数量。

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