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Plug-in over Plug-in Evaluation in Heterogeneous 5G Enabled Networks and Beyond

机译:在异构5G支持网络中的插入式评估插件

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摘要

With the cool upcoming wave of 5G, currently, the networking and telecommunication industries are facing various digital transformations, which are changing the very fundamental nature of the existing network management infrastructure. Besides the Internet of Things (IoT) domain, we also notice that the 5G network in itself is composed of millions of heterogeneous physical entities and nodes, multiple domains, complex protocols and technologies, different gateways, and so on. This heterogeneity imposes critical impacts on the application specific quality of service (QoS) requirements, performance and utilization of network resources, and data and user security. In order to alleviate the above impacts, researchers propose to use different technologies such as software-defined networking, network function virtualization, blockchain, and artificial intelligence in 5G-enabled IoT networking. We notice that the layers over layers (of protocols and technologies) act like a plug-in over plug-in (PoP) in the network in order to accomplish various aims, including meeting QoS demands, enhancing security, load balancing, and so on. On one hand, we agree that this integration of different technologies in 5G networks bring numerous advantages, but on the other hand, we realize that this has posed a lot of unique critical issues in modern 5G network management. In this article, we point out that this straightforward approach of PoP is eventually not a healthy approach for network transformation. In this regard, using open source MANO (OSM), we provide a proof of concept (PoC) to show that at varying degrees of heterogeneity, PoP adds the delay in the VNF deployment process and further impacts the VIM CPU performance. This eventually affects the QoS requirements of IoT nodes or applications. Following this, we propose a high-level holistic approach that helps to alleviate the PoP issue. Finally, in this context, we also discuss the associated challenges and research opportunities.
机译:目前,随着5克的酷即将到来的波浪,网络和电信行业面临各种数字转换,这正在改变现有网络管理基础设施的基本性质。除了物联网(物联网)域,我们还注意到5G网络本身由数百万个异构物理实体和节点组成,多个域,复杂协议和技术,不同的网关等。这种异质性对应用特定的服务质量(QoS)要求,网络资源的性能和利用以及数据和用户安全性对应用特定的服务质量,性能和利用产生了严重影响。为了缓解上述影响,研究人员建议在5G启用的物联网网络中使用软件定义网络,网络功能虚拟化,区块链和人工智能等不同技术。我们注意到层层(协议和技术)的层,如网络中的插件(POP)上的插件,以完成各种目标,包括满足QoS需求,增强安全性,负载平衡等。 。一方面,我们同意在5G网络中的这种不同技术集成带来了众多优势,但另一方面,我们意识到这在现代5G网络管理中已经提出了许多独特的关键问题。在本文中,我们指出,这种流行的这种直接方法最终不是一种健康的网络转换方法。在这方面,使用开源Mano(OSM),我们提供概念证明(POC),以表明在不同程度的异质性上,POP增加了VNF部署过程中的延迟,并进一步影响了Vim CPU性能。这最终影响物联网节点或应用程序的QoS要求。在此之后,我们提出了一种高级整体方法,有助于缓解流行问题。最后,在这种情况下,我们还讨论了相关的挑战和研究机会。

著录项

  • 来源
    《IEEE Network》 |2021年第2期|34-39|共6页
  • 作者单位

    Deakin Univ Melbourne Vic Australia|Ctr Cyber Secur Res & Innovat Melbourne Vic Australia;

    Univ Newcastle ACSRC Newcastle NSW Australia;

    Univ Newcastle ACSRC Newcastle NSW Australia|Univ Newcastle Cyber Secur Newcastle NSW Australia;

    Thapar Univ Dept Comp Sci & Engn Patiala Punjab India|Asia Univ Dept Comp Sci & Informat Engn Taichung Taiwan|King Abdulaziz Univ Jeddah Saudi Arabia|Univ Petr & Energy Studies Sch Comp Sci Dehra Dun Uttarakhand India;

    Deakin Univ Sch Informat Technol Artificial Intelligence & Image Proc Res Cluster Melbourne Vic Australia|Ctr Cyber Secur Res & Innovat Melbourne Vic Australia;

    Univ Technol Sydney Sch Comp Sci Sydney NSW Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    5G mobile communication; Quality of service; Security; Computer architecture; Heterogeneous networks; Delays; Time factors;

    机译:5G移动通信;服务质量;安全;计算机架构;异构网络;延迟;时间因素;

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