Latency Components and Analysis in 5G New Radio

M. Indoonundon, T. P. Fowdur
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Abstract

Low latency communications are a crucial enabling factor of several 5G New Radio (NR) use cases. In fact, the support of ultra-reliable low-latency communications (URLLC) in 5G NR opens doors to a panoply of wireless applications such as robotics, autonomous driving, telesurgery, virtual reality and telepresence. To achieve URLLC, the long-term evolution of network architecture and key enabling communication technologies are necessary. Since its initial conception, the design of 5G NR has been made with the objective of drastically minimizing the latency at various segments (such as the air interface, fronthaul, backhaul, edge, core and transport) in its end-to-end network. In this paper, a detailed analysis of the concept of latency in the 5G NR communication system in terms of the end-to-end network, user plane and control plane latency is presented. Moreover, the different enabling technologies to achieve URLLC are also reviewed. Challenges that remain to be addressed and gaps in current research are also identified.
5G新无线电中的延迟成分及分析
低延迟通信是几个5G新无线电(NR)用例的关键使能因素。事实上,5G NR中对超可靠低延迟通信(URLLC)的支持为机器人、自动驾驶、远程外科手术、虚拟现实和远程呈现等一系列无线应用打开了大门。为了实现URLLC,需要网络架构和关键通信技术的长期演进。从最初的概念开始,5G NR的设计目标就是在其端到端网络中大幅减少各个部分(如空中接口、前传、回程、边缘、核心和传输)的延迟。本文从端到端网络、用户平面和控制平面三个方面详细分析了5G NR通信系统中时延的概念。此外,还回顾了实现URLLC的不同使能技术。还指出了目前研究中有待解决的挑战和差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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