论文标题
MMWave无人机网络中NOMA传输的物理层安全性
Physical Layer Security for NOMA Transmission in mmWave Drone Networks
论文作者
论文摘要
非正交的多重访问(NOMA)和毫米波(MMWave)变速器使无人机(UAV)辅助无线网络能够在密集包装的城市区域提供宽带连接。然而,恶意接收者的存在损害了无人机与地面通信链接的安全性,从而降低了保密率。在这项工作中,我们在MMWave无人机辅助无线网络中考虑了基于NOMA的传输策略,并严格调查了各自的秘密利率性能。特别是,我们提出了一种受保护的区域方法,以防止最脆弱的子区域(在用户区域之外)无法存在恶意接收器,从而提高了秘密评价。然后,各自的保密率是根据保护区的函数在分析中得出的,该区域通过优化使用中保护区的形状来验证秘密率的改善。此外,我们表明,MMWave链路的最佳保护区形状似乎是保护角度与距离维度之间的折衷方案,否则将形成仅保护Sub-6GHz链路的距离维度。我们还数字评估了传输功率,保护区大小和无人机高度对秘密评价绩效改进的影响。
The non-orthogonal multiple access (NOMA) and millimeter-wave (mmWave) transmission enable the unmanned aerial vehicle (UAV) assisted wireless networks to provide broadband connectivity over densely packed urban areas. The presence of malicious receivers, however, compromise the security of the UAV-to-ground communications link, thereby degrading secrecy rates. In this work, we consider a NOMA-based transmission strategy in a mmWave UAV-assisted wireless network, and investigate the respective secrecy-rate performance rigorously. In particular, we propose a protected-zone approach to enhance the secrecy-rate performance by preventing the most vulnerable subregion (outside the user region) from the presence of malicious receivers. The respective secrecy rates are then derived analytically as a function of the protected zone, which verifies great secrecy rate improvements through optimizing shape of the protected zone in use. Furthermore, we show that the optimal protected zone shape for mmWave links appears as a compromise between protecting the angle versus distance dimension, which would otherwise form to protect solely the distance dimension for sub-6GHz links. We also numerically evaluate the impact of transmission power, protected-zone size, and UAV altitude on the secrecy-rate performance improvements as practical considerations.