Edge Computing Enabled Resilient Wireless Network Virtualization for Internet of Things

D. Rawat, Md. Salik Parwez, Abdullah Alshammari
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引用次数: 21

Abstract

With the successful deployment of wireless networks such as cellular and Wi-Fi networks as well as development of lightweight hand-held devices, wireless communication became the fastest growing sector in communication industry and wireless networks have been part of every business. Over 25 billion devices are expected to be connected to the Internet by 2020. Because of exponentially increasing number of connected devices, we have Internet of Things (IoT) enabled applications that offer socioeconomic benefits. Different IoT applications have different operational requirements and constraints. For instance, IoT enabled transportation cyber-physical system needs lowest latency and high data rate, IoT enabled financial systems or banks need high security to support mobile banking, IoT enabled manufacturing systems need high resiliency to combat fault tolerance and cyber-attacks, IoT enabled cyber-physical power system needs the least latency and highest resiliency to avoid power outage caused by faults or cyber-attacks. In this paper, we propose wireless network virtualization to create different virtual wireless networks (VWNs) through mobile virtual network operators (MVNOs) to support different IoT enabled systems with diverse requirements and resiliency. Wireless virtualization is regarded as an emerging paradigm to enhance RF spectrum utilization, provide better coverage, increase network capacity, enhance energy efficiency and provide security. In order to prevent double-spending (allocating same frequency to multiple network providers) of wireless resources, we have proposed to use blockchain based approach which provides quality-of-service to users. Furthermore, IoT is expected to generate massive amount of data (aka big data), we consider edge computing to process big data when individual devices have limited computing/processing and storage capabilities. Moreover, network segmentation through VWNs provides the security and enhances the network performance. Performance of the proposed approach is evaluated using numerical results obtained from simulation.
支持边缘计算的物联网弹性无线网络虚拟化
随着蜂窝网络和Wi-Fi网络等无线网络的成功部署,以及轻量级手持设备的发展,无线通信成为通信行业发展最快的领域,无线网络已经成为每个业务的一部分。到2020年,预计将有超过250亿台设备连接到互联网。由于连接设备的数量呈指数级增长,我们拥有支持物联网(IoT)的应用程序,提供社会经济效益。不同的物联网应用具有不同的操作需求和约束。例如,物联网支持的交通网络物理系统需要最低的延迟和高数据速率,物联网支持的金融系统或银行需要高安全性来支持移动银行,物联网支持的制造系统需要高弹性来对抗容错和网络攻击,物联网支持的网络物理电力系统需要最低的延迟和最高的弹性,以避免因故障或网络攻击造成的停电。在本文中,我们提出无线网络虚拟化,通过移动虚拟网络运营商(mvno)创建不同的虚拟无线网络(VWNs),以支持具有不同需求和弹性的不同物联网系统。无线虚拟化被认为是提高射频频谱利用率、提供更好的覆盖、增加网络容量、提高能源效率和提供安全性的新兴范例。为了防止无线资源的双重花费(将相同的频率分配给多个网络提供商),我们建议使用基于区块链的方法,为用户提供服务质量。此外,物联网有望产生大量数据(又名大数据),当单个设备的计算/处理和存储能力有限时,我们考虑使用边缘计算来处理大数据。此外,通过vpn进行网段可以提高网络的安全性和性能。利用仿真得到的数值结果对该方法的性能进行了评价。
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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