论文标题
6G为航空通信和服务开辟了一个新时代
6G opens up a New Era for Aeronautical Communication and Services
论文作者
论文摘要
尽管5G提供高质量的服务,主要是在覆盖我们星球表面的二维陆地区域,而6g我们的目标是全面利用三维。这样,6G包括各种非事物网络。特别是,无人驾驶汽车(UAV),高空平台(HAP),(自动)飞行出租车和民用飞机是已经存在的卫星网络的新补充,可以补充蜂窝地面网络。他们与6G的集成在服务覆盖范围方面是有希望的,但由于迄今为止封闭的系统,也充满挑战。新兴的技术概念,例如移动边缘计算(MEC)和软件定义的网络(SDN)可以为将航空系统完全集成到地面对应物中提供基础。但是,这些技术使航空系统综合体的管理和编排。作为将航空通信和服务整合到6G中的一步,我们提出了一个框架,以收集,监视和分配异质飞行物体中天空中的资源。这为6G航空应用的新时代提供了高性能服务。基于我们的航空框架,我们介绍了新兴应用用例,包括航空边缘计算(AEC),飞机AS-A-SENSOR和CABIN内网络。
While 5G delivers high quality services mostly in a two dimensional terrestrial area covering our planet's surface, with 6G we aim at a full exploitation of three dimensions. In this way, 6G includes all kinds of non-terrestrial networks. In particular, Unmanned Aerial Vehicles (UAVs), High-Altitude Platforms (HAPs), (self-)flying taxis and civil aircrafts are new additions to already existing satellite networks complementing the cellular terrestrial network. Their integration to 6G is promising with respect to service coverage, but also challenging due to the so far rather closed systems. Emerging technology concepts such as Mobile Edge Computing (MEC) and Software-Defined Networking (SDN) can provide a basis for a full integration of aeronautical systems into the terrestrial counterpart. However, these technologies render the management and orchestration of aeronautical systems complex. As a step towards the integration of aeronautical communication and services into 6G, we propose a framework for the collection, monitoring and distribution of resources in the sky among heterogeneous flying objects. This enables high-performance services for a new era of 6G aeronautical applications. Based on our aeronautical framework, we introduce emerging application use-cases including Aeronautical Edge Computing (AEC), aircraft-as-a-sensor, and in-cabin networks.