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Software defined networking for wireless local networks in Smart Grid

机译:软件定义了智能网格中无线本地网络的网络

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Emerging Software Defined Networking (SDN) technology has provided excellent flexibility to large-scale networks in terms of control, management, security, and maintenance. With SDN, network architectures can be deployed and maintained with ease. New trends in computing (e.g., cloud computing, data centers, and virtualization) can seamlessly be integrated with the SDN architecture. On the other hand, recent years witnessed a tremendous growth in the upgrade and modernization of the critical infrastructure networks, namely the Smart-Grid, in terms of its underlying communication infrastructure. From Supervisory Control and Data Acquisition (SCADA) systems to Advanced Metering Infrastructure (AMI), an increasing number of networking devices are being deployed to connect all the local network components of the Smart Grid together. Such large local networks requires significant effort in terms of network management and security, which is costly in terms of labor and hardware upgrades. SDN would be a perfect candidate technology to alleviate the costs while providing fine-grained control of this critical network infrastructure. Hence, in this paper, we explore the potential utilization of the SDN technology over the Smart Grid communication architecture. Specifically, we introduce three novel SDN deployment scenarios in local networks of Smart Grid. Moreover, we also investigate the pertinent security aspects with each deployment scenario along with possible solutions.
机译:新兴软件定义的网络(SDN)技术在控制,管理,安全性和维护方面为大规模网络提供了出色的灵活性。使用SDN,可以轻松地部署和维护网络架构。计算中的新趋势(例如,云计算,数据中心和虚拟化)可以与SDN架构无缝集成。另一方面,近年目睹了关键基础设施网络的升级和现代化,即智能电网的升级和现代化,就其基础通信基础设施而言。从监督控制和数据采集(SCADA)系统到高级计量基础设施(AMI),正在部署越来越多的网络设备,以将智能电网的所有本地网络组件连接在一起。这种大型本地网络在网络管理和安全方面需要大量努力,这在劳动力和硬件升级方面昂贵。 SDN将是一个完美的候选技术,以减轻成本,同时提供对该关键网络基础设施的细粒度控制。因此,在本文中,我们探讨了SDN技术在智能电网通信架构上的潜在利用。具体而言,我们在智能电网的本地网络中介绍了三种新的SDN部署方案。此外,我们还通过每个部署方案以及可能的解决方案来调查相关的安全方面。

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