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Synchrophasor Sensor Networks for Grid Communication and Protection

机译:用于电网通信和保护的同步相量传感器网络

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摘要

This paper focuses primarily on leveraging synchronized current/voltage amplitudes and phase angle measurements to foster new categories of applications, such as improving the effectiveness of grid protection and minimizing outage duration for distributed grid systems. The motivation for such an application arises from the fact that with the support of communication, synchronized measurements from multiple sites in a grid network can greatly enhance the accuracy and timeliness of identifying the source of instabilities. The paper first provides an overview of synchrophasor networks and then presents techniques for power quality assessment, including fault detection and protection. To achieve this we present a new synchrophasor data partitioning scheme that is based on the formation of a joint space and time observation vector. Since communication is an integral part of synchrophasor networks, the newly adopted wireless standard for machine-to-machine (M2M) communication, known as IEEE 802.11ah, has been investigated. The paper also presents a novel implementation of a hardware in the loop testbed for real-time performance evaluation. The purpose is to illustrate the use of both hardware and software tools to verify the performance of synchrophasor networks under more realistic environments. The testbed is a combination of grid network modeling, and an Emulab-based communication network. The combined grid and communication network is then used to assess power quality for fault detection and location using the IEEE 39-bus and 390-bus systems.
机译:本文主要侧重于利用同步的电流/电压幅度和相角测量来促进新的应用类别,例如提高电网保护的有效性并最小化分布式电网系统的停电时间。这种应用的动机源于以下事实:在通信的支持下,来自网格网络中多个站点的同步测量可以极大地提高识别不稳定源的准确性和及时性。本文首先概述了同步相量网络,然后介绍了电能质量评估技术,包括故障检测和保护。为了实现这一目标,我们提出了一种新的同步相​​量数据分区方案,该方案基于联合空间和时间观测矢量的形成。由于通信是同步相量网络的组成部分,因此对新采用的用于机器对机器(M2M)通信的无线标准(称为IEEE 802.11ah)进行了研究。本文还提出了一种新的硬件实现,用于在环路测试平台上进行实时性能评估。目的是说明在更现实的环境下使用硬件和软件工具来验证同步相量网络的性能。该测试平台是网格网络建模和基于Emulab的通信网络的组合。然后,将合并的网格和通信网络用于使用IEEE 39总线和390总线系统评估故障检测和定位的电能质量。

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