5G Physical Layer-Based Procedure to Support Time-Sensitive Networking

Telecom Pub Date : 2024-01-24 DOI:10.3390/telecom5010004
Faiza Bouchmal, Oscar Carrasco, Yang Fu, Jaime Rodrigo, J. Monserrat, Narcís Cardona
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Abstract

Deploying 5G in new and diverse use cases, such as Industry 4.0 and factory automation, requires 5G systems to harmonize with the communication technologies used in these industries. To this end, 3GPP Release 16 and Release 17 have made significant progress in integrating 5G systems with the IEEE 802.1 working group specifications on Time-Sensitive Networking (TSN). This paper explains a method and architecture for supporting TSN over a wireless channel in a 5G network that adds the TSN synchronization function in a Small Cell gNB implementing the TSN Translator function (SC-TT). This TSN-capable small cell provides TSN over the wireless network to synchronize UEs with the Grand Master (GM) using the physical layer signal of the 5G radio frame and the transmission of the GM reference time to provide high-precision synchronization. This paper explores the pivotal role of a Slot Indicator Signal in enhancing synchronization precision, ensuring that the UE-GM synchronization occurs within an exceptionally narrow timeframe as small as 10 ns.
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基于 5G 物理层的程序支持时间敏感型网络
在工业 4.0 和工厂自动化等新的多样化用例中部署 5G 需要 5G 系统与这些行业使用的通信技术相协调。为此,3GPP Release 16 和 Release 17 在将 5G 系统与 IEEE 802.1 工作组的时敏网络(TSN)规范集成方面取得了重大进展。本文介绍了在 5G 网络中通过无线信道支持 TSN 的方法和架构,该方法和架构在实现 TSN 转换器功能(SC-TT)的小基站 gNB 中增加了 TSN 同步功能。这种支持 TSN 的小蜂窝通过无线网络提供 TSN,利用 5G 无线帧的物理层信号和 GM 参考时间的传输,使 UE 与 Grand Master(GM)同步,从而提供高精度同步。本文探讨了时隙指示信号在提高同步精度方面的关键作用,确保 UE-GM 同步在 10 ns 的超窄时间范围内进行。
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