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3D Beamforming for Improving the Security of UAV-Enabled Mobile Relaying System

机译:3D波束成形,提高启用无人机的移动式中继系统的安全性

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In this paper, we consider an unmanned aerial vehicle (UAV)-enabled mobile relaying system consists of a ground control station (GCS), a high-mobility UAV for relaying, a destination, and an eavesdropper. To improve the security of the three-dimension (3D) mobile relaying system with delayed channel state information (CSI), we propose a destination-specific (DS) 3D beamforming scheme and an eavesdropper-null (EN) 3D beamforming scheme, in both the horizontal angle and the vertical angle of antenna pattern are adapted instantaneously. In particular, we study the secrecy rate maximization problem via trajectory planning. However, this problem with mobility constraint and location constraint is a non-convex optimization problem. To solve it, we propose a successive trajectory planning algorithm by optimizing the incremental in each time-slot. Simulation results verify that the 3D beamforming schemes can greatly improve the security of UAV-enabled mobile relaying system and the proposed trajectory planning algorithm is also proven become effective.
机译:在本文中,我们考虑一个无人驾驶飞行器(UAV)的移动中继系统由地面控制站(GCS)组成,用于中继,目的地和窃听器的高迁移率UAV。为了提高具有延迟信道状态信息(CSI)的三维(3D)移动中继系统的安全性,我们提出了一种目的地特定(DS)3D波束形成方案和窃听者 - 空(EN)3D波束形成方案,两者天线图案的水平角度和垂直角度瞬间调整。特别是,我们通过轨迹规划研究保密率最大化问题。但是,移动性约束和位置约束的这个问题是非凸优化问题。为了解决它,我们通过在每个时隙中优化增量来提出连续的轨迹规划算法。仿真结果验证了3D波束成形方案可以大大提高支持无人机的移动式中继系统的安全性,并且还证明了所提出的轨迹规划算法生效。

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