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Flying Height Optimization for Unmanned Aerial Vehicles in Cellular - Flying Adhoc Network

机译:飞行茶编无人机飞行空中车辆的飞行高度优化

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摘要

In Flying Adhoc NETwork (FANET), the communications between Unmanned Aerial Vehicles (UAV), UAVs to infrastructure, and UAVs to wireless sensors are crucial design factors. With strict energy constrain during flying operation, the allocation of power and resources, the flying strategy, and the medium access mechanism shall be effectively used. When employing cellular network as backhaul for UAVs, the flying height of UAVs not only affects the communication between UAVs and end users on the ground, but also determines the reception between infrastructure (base stations from the cellular network) to UAVs. In this paper, we optimize the flying height of UAVs for better reception from the cellular network by using stochastic geometry analysis to model the aggregated interference at the UAV side. The network system performance is also examined under the effect of fading-lesschannel and Rayleigh fading channel.This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium provided the original work is properly cited.
机译:在飞行ad-hoc网络(FANET),无线传感器的无人机(UAV),无人机基础设施和无人机之间的通信是关键的设计因素。随着飞行操作过程中严格的能源约束,必须有效地使用权力和资源,飞行策略,介质访问机制的分配。采用蜂窝网络回程无人机时,无人机的飞行高度不仅影响地上无人机和最终用户之间的通信,而且还确定(来自蜂窝网络的基站)的基础设施之间的接收到无人机。在本文中,我们通过使用随机几何分析在无人机方面的聚集干扰模型优化无人机从蜂窝网络更好的接收的飞行高度。网络系统性能也被褪色lesschannel及效果下检查瑞利衰落channel.This采用知识共享署名许可证的条款分布式开放存取物品(http://creativecommons.org/licenses/by/4.0/ ),其允许在任何介质无限制地使用,分发和再现提供的原始工作正确的引用。

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