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Position-Based Beamforming Design for UAV Communications in LTE Networks

机译:LTE网络中无人机通信的基于位置的波束成形设计

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Unmanned Aerial Vehicles (UAVs) have demonstrated exceptional capabilities in many real-world applications such as remote sensing, emergency medicine delivery and precision agriculture. LTE networks are regarded as key candidates to offer high performance broadband wireless services to support UAV applications and safe deployment. However, the unique features of aerial UAVs including high-altitude manipulation, three-dimension (3D) mobility and rapid velocity changes, pose challenging issues for optimising LTE wireless communications to support UAVs, especially under the severe inter-cell interference generated by UAVs in the sky. To deal with this issue, we propose a novel position-based robust beamforming algorithm to improve the performance of LTE networks to serve UAVs. For obtaining optimal weight vectors that could tolerate Direction-of-Arrival (DoA) estimation errors, we propose a hybrid method to integrate the channel information and UAV flight information to accurately estimate the DoA angle range. In order to validate the performance of the proposed robust beamforming algorithm, we conduct comprehensive simulation experiments under practical configurations. The results show that the proposed robust beamforming algorithm outperforms benchmark Linearly Constrained Minimum Variance (LCMV) beamforming and GPS-based beamforming algorithms.
机译:无人飞行器(UAV)在许多现实世界的应用(例如遥感,急诊药物输送和精确农业)中都表现出卓越的功能。 LTE网络被视为提供高性能宽带无线服务以支持UAV应用和安全部署的主要候选者。但是,空中无人机的独特功能包括高空操纵,三维(3D)移动性和快速速度变化,这给优化LTE无线通信以支持无人机提供了挑战性的问题,特别是在无人机产生严重的小区间干扰的情况下天空。为了解决这个问题,我们提出了一种新颖的基于位置的鲁棒波束成形算法,以提高LTE网络为无人机服务的性能。为了获得可以容忍到达方向(DoA)估计误差的最佳权重向量,我们提出了一种混合方法,将通道信息和UAV飞行信息相集成,以准确估计DoA角度范围。为了验证所提出的鲁棒波束成形算法的性能,我们在实际配置下进行了全面的仿真实验。结果表明,所提出的鲁棒波束成形算法优于基准线性约束最小方差(LCMV)波束成形和基于GPS的波束成形算法。

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