The Next Generation Network in 2030: Applications, Services, and Enabling Technologies

R. Giuliano
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引用次数: 10

Abstract

Advances in multimedia enable new services for humans and smart objects. By the year 2030, the forthcoming network will implement new capabilities for richer and more interactive applications. In addition to broadband and low latency services, precise communications and qualitative communications will be supported by the next generation network 2030. This allows providing composed services such as Holographic Type Communications, Multisensorial Communications, Emergency Communications and Collaborative Robots (or Cobots). Complexity and application software should not be confined only to external network nodes (i.e., user terminals and servers) but internal nodes should support the communication and the synchronization among sub-flows coming from different sources in order to guarantee the precise data delivery at a given point. Based on generic applications (e.g., industrial automation, health, automotive, entertainment and education), the network 2030 will provide specific applications such as remote surgery, machine collaboration and virtual laboratories. Finally, the main envisaged enabling technologies are increasing the service bandwidth and the number of access points, adopting the artificial intelligence at any level and any segment of the network, deploying Reconfigurable Intelligent Meta-surfaces and exploiting all potentials of each given kind of architecture such as terrestrial, aerial and space.
2030年的下一代网络:应用、服务和使能技术
多媒体的进步为人类和智能对象提供了新的服务。到2030年,即将到来的网络将实现更丰富和更具交互性的应用程序的新功能。除了宽带和低延迟服务外,2030年下一代网络还将支持精确通信和定性通信。这允许提供组合服务,如全息型通信、多传感器通信、紧急通信和协作机器人(或协作机器人)。复杂性和应用软件不应只局限于外部网络节点(即用户终端和服务器),内部节点应支持来自不同来源的子流之间的通信和同步,以保证在给定点上的精确数据传递。基于通用应用(如工业自动化、健康、汽车、娱乐和教育),2030年网络将提供具体应用,如远程手术、机器协作和虚拟实验室。最后,主要设想的使能技术是增加服务带宽和接入点的数量,在任何级别和网络的任何部分采用人工智能,部署可重构的智能元表面,并利用每种给定类型的架构(如地面、空中和空间)的所有潜力。
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