论文标题

天空中的6G:3D网络边缘的按需智能

6G in the Sky: On-Demand Intelligence at the Edge of 3D Networks

论文作者

Strinati, Emilio Calvanese, Barbarossa, Sergio, Choi, Taesang, Pietrabissa, Antonio, Giuseppi, Alessandro, De Santis, Emanuele, Vidal, Josep, Becvar, Zdenek, Haustein, Thomas, Cassiau, Nicolas, Costanzo, Francesca, Kim, Junhyeong, Kim, Ilgyu

论文摘要

6G将共同利用卫星,空中和地面平台,以提高无线电访问能力,并通过在空中平台和低轨道卫星上合并移动边缘计算(MEC)功能,从而在三维空间(3D)中释放按需边缘云服务的支持。这将把MEC支持扩展到天空中的设备和网络元素,并将构建一个空间的MEC,从而实现智能的个性化和按需服务。 3D最终用户将经历被分布式计算机包围的印象,该计算机在明显的延迟中满足其请求。在本文中,我们考虑了一种建筑,可按需,在3D空间中随时随地提供通信,计算和缓存(C3)服务,并在常规地面(地面)基站和飞行(非事物)节点的整合基础上建立。鉴于整个网络的复杂性,需要通过基于AI的算法共同精心策划C3资源和管理设备的管理,从而利用虚拟化网络在跨陆地和非事物节点上以分布的方式动态部署的虚拟化网络。

6G will exploit satellite, aerial and terrestrial platforms jointly to improve radio access capability and to unlock the support of on-demand edge cloud services in the three dimensional space (3D) by incorporating Mobile Edge Computing (MEC) functionalities on aerial platforms and low orbit satellites. This will extend the MEC support to devices and network elements in the sky and will forge a space borne MEC enabling intelligent personalized and distributed on demand services. 3D end users will experience the impression of being surrounded by a distributed computer fulfilling their requests in apparently zero latency. In this paper, we consider an architecture providing communication, computation, and caching (C3) services on demand, anytime and everywhere in 3D space, building on the integration of conventional ground (terrestrial) base stations and flying (non-terrestrial) nodes. Given the complexity of the overall network, the C3 resources and the management of the aerial devices need to be jointly orchestrated via AI-based algorithms, exploiting virtualized networks functions dynamically deployed in a distributed manner across terrestrial and non-terrestrial nodes.

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