论文标题
基于代码手册的光束跟踪,用于共形arrayEnabled无人机MMWave网络
Codebook-Based Beam Tracking for Conformal ArrayEnabled UAV MmWave Networks
论文作者
论文摘要
毫米波(MMWave)通信可能会满足无人机(UAV)网络的高数据率要求。但是,作为MMWave通信的先决条件,由于无人机的三维(3D)迁移率和态度变化,狭窄的方向光束跟踪非常具有挑战性。为了解决光束跟踪困难,我们建议将共形阵列(CA)与每个无人机的表面集成在一起,从而在高度动态的无人机MMWave网络中具有完整的空间覆盖范围和敏捷束跟踪。更具体地说,我们工作的主要贡献是三倍。 1)建立了一个新的MMWave光束跟踪框架,该框架是为CA-启用无人机MMWave网络建立的。 2)构建了专门的层次代码书,以驱动定向辐射元件(DRE)覆盖的圆柱形保形阵列(CCA),其中包含角梁模式和子阵列模式,以充分利用CA的电势。 3)提出了一个基于代码手册的多源束跟踪方案,在此过程中,高斯工艺学习启用了无人机位置/态度谓词,以提高光束跟踪效率,并结合跟踪 - 纠正 - 越来越意识到的自适应梁宽控制。仿真结果验证了CA启用的无人机MMWave网络中提出的基于密码的光束跟踪方案的有效性,并就频谱效率和在高度动态的方案中的频谱效率和中断概率方面证明了CA比常规规划师阵列的优势。
Millimeter wave (mmWave) communications can potentially meet the high data-rate requirements of unmanned aerial vehicle (UAV) networks. However, as the prerequisite of mmWave communications, the narrow directional beam tracking is very challenging because of the three-dimensional (3D) mobility and attitude variation of UAVs. Aiming to address the beam tracking difficulties, we propose to integrate the conformal array (CA) with the surface of each UAV, which enables the full spatial coverage and the agile beam tracking in highly dynamic UAV mmWave networks. More specifically, the key contributions of our work are three-fold. 1) A new mmWave beam tracking framework is established for the CA-enabled UAV mmWave network. 2) A specialized hierarchical codebook is constructed to drive the directional radiating element (DRE)-covered cylindrical conformal array (CCA), which contains both the angular beam pattern and the subarray pattern to fully utilize the potential of the CA. 3) A codebook-based multiuser beam tracking scheme is proposed, where the Gaussian process machine learning enabled UAV position/attitude predication is developed to improve the beam tracking efficiency in conjunction with the tracking-error aware adaptive beamwidth control. Simulation results validate the effectiveness of the proposed codebook-based beam tracking scheme in the CA-enabled UAV mmWave network, and demonstrate the advantages of CA over the conventional planner array in terms of spectrum efficiency and outage probability in the highly dynamic scenarios.