5G and B5G NEF exposure capabilities towards an Industrial IoT use case

G. Makropoulos, D. Fragkos, H. Koumaras, Jaka Cijan, Luka Korsic, R. Sušnik
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引用次数: 0

Abstract

Given the large amount of data usage and diverse business models in the current market, 5G and B5G networks are forecasted to manage and support a variety of new business solutions with respect to high-performance needs, while also allowing existing services to be enhanced and optimized. One effective way to accomplish this is by fully utilizing the network's openness and programmability in terms of both business and technical level coordination. A cornerstone to the above mentioned premise is the implementation of the Network Exposure Function (NEF) interfaces that are required in order for NEF to expose the standardized APIs. In this context, the paper presents the concept of network exposure via a simulation tool that enables application developers to experiment with the northbound APIs under a simulated and configurable environment. Moreover, the required software that interacts with the exposed APIs, namely the Network Application, is introduced and validated on top of the Internet of Things (IoT) and Machine to Machine (M2M) use case, which falls under the scope of the Factory of the Future and Industry 4.0 concept.
面向工业物联网用例的5G和B5G NEF曝光能力
考虑到当前市场上大量的数据使用量和多样化的业务模式,预计5G和B5G网络将管理和支持各种新的业务解决方案,以满足高性能需求,同时也允许现有业务得到增强和优化。实现这一目标的一种有效方法是在业务和技术层面的协调方面充分利用网络的开放性和可编程性。上述前提的基础是网络公开功能(NEF)接口的实现,NEF需要这些接口来公开标准化api。在这种情况下,本文通过模拟工具提出了网络暴露的概念,该工具使应用程序开发人员能够在模拟和可配置的环境下实验北向api。此外,与暴露的api交互的所需软件,即网络应用程序,在物联网(IoT)和机器对机器(M2M)用例之上引入并验证,这属于未来工厂和工业4.0概念的范围。
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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