论文标题
基于无人机的5G网络:一项实用调查研究
UAV Based 5G Network: A Practical Survey Study
论文作者
论文摘要
预计无人机(UAV)将显着有助于开发新的无线网络,这些网络可以处理高速传输并启用无线广播。与依靠永久基础架构的通信相比,无人机提供了许多优势,包括灵活的部署,可靠的视线线(LOS)连接链接以及由于受控移动性而获得的更多自由度。无人驾驶汽车(UAV)与5G网络和物联网(IoT)组件相结合,有可能完全改变各种行业。无人机可以利用5G网络的低潜伏期和高速能力,开放各种应用程序,例如遥感,精密耕作和灾难响应,实时传输大量数据。这项研究介绍了有关5G/B5G WLAN关于5G/B5G WLAN的这项研究。三个无人机辅助的MEC网络方案还包括资源和优化分配的详细信息。我们还专注于无人机执行任务计算的情况,除了用作MEC服务器以检查风电涡轮机。本文涵盖了无人机辅助MEC的关键实施困难,例如最佳的无人机部署,风模型和耦合轨迹计算性能优化,以促进实践中无人机辅助MEC的广泛实现。 5G和5G以上(B5G)的主要问题是将宽带访问访问各种设备。在讨论开发集成网络设计面临的相关研究问题之前,我们首先简要概述了背景信息以及整合空间,航空和土地的网络。
Unmanned aerial vehicles (UAVs) are anticipated to significantly contribute to the development of new wireless networks that could handle high-speed transmissions and enable wireless broadcasts. When compared to communications that rely on permanent infrastructure, UAVs offer a number of advantages, including flexible deployment, dependable line-of-sight (LoS) connection links, and more design degrees of freedom because of controlled mobility. Unmanned aerial vehicles (UAVs) combined with 5G networks and Internet of Things (IoT) components have the potential to completely transform a variety of industries. UAVs may transfer massive volumes of data in real-time by utilizing the low latency and high-speed abilities of 5G networks, opening up a variety of applications like remote sensing, precision farming, and disaster response. This study of UAV communication with regard to 5G/B5G WLANs is presented in this research. The three UAV-assisted MEC network scenarios also include the specifics for the allocation of resources and optimization. We also concentrate on the case where a UAV does task computation in addition to serving as a MEC server to examine wind farm turbines. This paper covers the key implementation difficulties of UAV-assisted MEC, such as optimum UAV deployment, wind models, and coupled trajectory-computation performance optimization, in order to promote widespread implementations of UAV-assisted MEC in practice. The primary problem for 5G and beyond 5G (B5G) is delivering broadband access to various device kinds. Prior to discussing associated research issues faced by the developing integrated network design, we first provide a brief overview of the background information as well as the networks that integrate space, aviation, and land.