Boosting Short-Range Wireless Communications in Entities: the 6G-SHINE Vision

Gilberto Berardinelli,Ramoni Adeogun,Baldomero Coll-Perales, Javier Gozalvez,Davide Dardari,Enrico Maria Vitucci, Christian Hofmann,Spilios Giannoulis,Meng Li, Frank Burkhard, Basuki Priyanto,Henrik Klessig, Ognen Ognenoski, Yasser Mestrah,Thomas Jacobsen,Renato Abreu, Usman Virk, Fotis Foukalas

2023 IEEE Future Networks World Forum (FNWF)(2023)

引用 0|浏览0
暂无评分
摘要
In the coming 6th Generation (6G) era, the perva-siveness of wireless communications in everyday life and vertical markets is expected to take a major leap, enabling revolutionary and highly demanding use cases. In-X subnetworks are expected to be located at the edge of the 6G 'network of networks'; they can provide short-range high-performance wireless connectivity in entities like robots, industrial production modules, vehicles, classrooms, etc., overcoming the limitation of current wireless technologies in terms of data rate, latency, complexity, and reliability. In this paper, we present the vision of the 6G SHort range extreme communication IN Entities (6G-SHINE) project, granted by the Smart Network and Services Joint Undertaking (SNS JU). 6G-SHINE is the first project exclusively focused on short-range in-X subnetworks, and aims at providing a significant breakthrough in multiple wireless communication fields, from physical layer to network architectures. We present the main project objectives and provide an overview of the technology components being researched. Also, we discuss the expected long-term beneficial impact of the project and its potential for future 6G standardization.
更多
查看译文
关键词
Short-range Communication,Short-range Wireless,Data Rate,Physical Layer,Impact Of Projects,Smart Services,6th Generation,Computational Resources,Traffic Flow,Channel Model,Spectral Efficiency,Orthogonal Frequency Division Multiplexing,Radio Propagation,Radio Resource,Unlicensed Spectrum,Advanced Driver Assistance Systems,Medium Access Control,Spectrum Allocation,6G Networks,Reconfigurable Intelligent Surface,Radio Resource Management,Technology Readiness Level,Controller Area Network,Duplexing,Signaling Overhead,Medium Access,Enablers,Robot Control
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要