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首页> 外文期刊>IEEE transactions on industrial informatics >SDN-Based Quality of Service Networking for Wide Area Measurement System
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SDN-Based Quality of Service Networking for Wide Area Measurement System

机译:基于SDN的广域测量系统服务资质

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摘要

Wide area measurement system (WAMS) infrastructure is one of the most significant elements of the smart grid that measures, collects, and analyzes data in the power system. Fundamental components of the WAMS are phasor measurement units (PMUs), phasor data concentrators (PDCs), and its relevant applications. The PDC collects data from several different PMUs, integrates data and sends it to the control center. In order to achieve a stable implementation of WAMS, the communication structure should be reliable and meets the quality of service (QoS) requirements for various applications in the network. In this paper, we propose a novel WAMS communication infrastructure by utilizing the software-defined networking technology, which can enhance the reliability of the corresponding networks. In the proposed model, in order to meet the applications QoS needs, the traffic flows are categorized into different class of services, and then by applying a QoS mechanism, along with a content-aware queuing algorithm, the maximum capacity for the critical traffic is obtained. This provides a low latency for critical WAMS applications. The proposed model has been implemented in the Mininet environment using the Ryu controller. The implementation results indicate that the proposed infrastructure reduces end-to-end delay and packets loss and utilizes the network resources optimally.
机译:广域测量系统(WAMS)基础设施是智能电网最重要的元素之一,可措施,收集和分析电力系统中的数据。 WAMS的基本组件是Phasor测量单位(PMU),Phasor数据集中器(PDC)及其相关应用。 PDC收集来自多个不同PMU的数据,集成数据并将其发送到控制中心。为了实现WAMS的稳定实现,通信结构应可靠,满足网络中各种应用的服务质量(QoS)要求。在本文中,我们通过利用软件定义的网络技术提出了一种新的WAMS通信基础架构,这可以提高相应网络的可靠性。在所提出的模型中,为了满足应用程序QoS需求,流量流入不同类别的服务,然后通过应用QoS机制,以及内容感知队列算法,最大的关键流量容量是获得。这提供了关键WAM应用程序的低延迟。所提出的模型已经在MinInet环境中实现了使用RYU控制器。实施结果表明,所提出的基础架构降低了端到端延迟和数据包丢失,并最佳利用网络资源。

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