Network-enabled Real-time Monitoring of Smart Power Distribution Operating States

A. Hamlyn, H. Cheung, T. Mander, Lin Wang, Cungang Yang, R. Cheung
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引用次数: 1

Abstract

Distributed generations (DGs) powered by renewable energy resources have become increasingly popular and show benefits, but their connection to distribution systems brings operation challenges that must be carefully monitored. This paper proposes a new network-enabled, real-time monitoring strategy for tracking the operating states of the distribution system connected with DGs. The design of a new network monitoring architecture is presented in this paper. This architecture is fault tolerant and has features from classical cascading, star, and ring architectures. The paper presents the real-time data acquisition and data post-processing strategy, design, and implementation in three levels: Cell units for monitoring feeder-tapped circuits including DG circuits connected on the feeders, Node unit for feeder and substation- level equipment, and Station unit for distribution network. Case studies are provided to demonstrate the proposed monitoring strategy and architecture using IEEE feeder circuits.
智能配电运行状态的网络化实时监控
以可再生能源为动力的分布式发电机组(dg)越来越受欢迎,并显示出效益,但它们与配电系统的连接带来了运营挑战,必须仔细监控。本文提出了一种新的基于网络的实时监测策略,用于跟踪与dg相连的配电系统的运行状态。本文提出了一种新的网络监控体系结构的设计。这种体系结构具有容错性,并具有经典级联、星型和环形体系结构的特性。本文介绍了实时数据采集和数据后处理策略,设计和实现三个层次:用于监控馈线抽头电路(包括连接在馈线上的DG电路)的Cell单元,用于馈线和变电站级设备的Node单元,以及用于配电网的Station单元。案例研究展示了采用IEEE馈线电路的监测策略和架构。
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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