Industrial IoT with Distributed Cloud Experiments using 5G LTE

Luka Lednicki, G. Bag, K. Landernäs, Niclas Ericsson, Larisa Rizvanovic, Kristian Sandström, J. Torsner, C. Curescu, B. Skubic
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引用次数: 1

Abstract

With the evolution of 5G it is envisioned that industrial applications with different requirements on latency and availability can be offloaded to a distributed cloud infrastructure. For example, some applications with stringent timing requirements can be hosted at the edge of the mobile network, closer to the control hardware, whereas some applications with relaxed timing requirements can be hosted in a cloud located geographically further away.This paper presents a feasibility study of hosting control applications based on OPC UA communication in a distributed cloud with LTE connectivity to the control hardware. The study includes measurements of communication round-trip time and availability of the network comparing cases where the application is hosted at a local or regional cloud. The results indicate that it is feasible to deploy industrial applications in a distributed cloud with timing requirements in the order of 100ms.
基于5G LTE的工业物联网分布式云实验
随着5G的发展,预计对延迟和可用性有不同要求的工业应用可以卸载到分布式云基础设施上。例如,一些具有严格定时要求的应用程序可以托管在移动网络的边缘,更靠近控制硬件,而一些具有宽松定时要求的应用程序可以托管在地理位置较远的云中。本文提出了一种基于OPC UA通信的分布式云中托管控制应用的可行性研究,并通过LTE连接到控制硬件。该研究包括通信往返时间和网络可用性的测量,比较应用程序托管在本地或区域云上的情况。结果表明,在时间要求为100ms的分布式云中部署工业应用是可行的。
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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