Traffic Scheduling for 5G-TSN Integrated Systems

Jingwei Yang, Guanding Yu
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引用次数: 3

Abstract

The fourth industrial revolution will significantly improve the level of informatization and intelligence of the industry by building a smart factory. As an essential part of the smart factory, industrial communication systems face rigorous challenges. On the one hand, many smart factory applications demand data delivery with ultra-high reliability within a very low end-to-end latency. On the other hand, new services place high demands on the flexibility and scalability of the communication system. Industry-standard organizations have embarked on research and proposed several potential solutions. The time-sensitive networking (TSN) task group has developed a series of ethernet-based standards to address issues such as time synchronization and traffic scheduling in industrial networks. Additionally, ultra-reliable and low-latency communications (URLLC) are supported by the 5th generation (5G) mobile communications technology. The combination of 5G and TSN technologies as a solution for industrial communication networks has received much attention, and many related studies have been conducted. In this paper, we investigate how to achieve low-latency communication in a 5G-TSN integrated network by considering non-real-time communication services with high throughput requirements. Simulation results demonstrate that the proposed approach performs well in terms of reducing end-to-end latency and improving system throughput.
5G-TSN集成系统的流量调度
第四次工业革命将通过建设智能工厂,显著提高工业的信息化和智能化水平。工业通信系统作为智能工厂的重要组成部分,面临着严峻的挑战。一方面,许多智能工厂应用程序要求在极低的端到端延迟内具有超高可靠性的数据交付。另一方面,新的业务对通信系统的灵活性和可扩展性提出了很高的要求。行业标准组织已经着手研究并提出了几种潜在的解决方案。时间敏感网络(TSN)任务组开发了一系列基于以太网的标准,以解决工业网络中的时间同步和流量调度等问题。此外,第五代(5G)移动通信技术还支持超可靠和低延迟通信(URLLC)。5G与TSN技术的结合作为工业通信网络的解决方案备受关注,并开展了许多相关研究。在本文中,我们研究了如何在5G-TSN集成网络中实现低延迟通信,同时考虑高吞吐量要求的非实时通信业务。仿真结果表明,该方法在降低端到端延迟和提高系统吞吐量方面表现良好。
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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