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Optimizing Wide Area Measurement System architectures with advancements in Phasor Data Concentrators (PDCs)

机译:借助相量数据集中器(PDC)的改进来优化广域测量系统架构

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Large scale deployment of Wide Area Measurement System (WAMS) is underway at several major power utilities around the globe. This is influencing several activities and discussions at international standard associations (IEEE/IEC) and meetings (NASPI/CIGRE/PSRC) to devise the effective but optimum WAMS architecture. This paper presents some of the recent advancements in Phasor Data Concentrator (PDC) technology to achieve fit-to-purpose WAMS architecture. The presented guidelines can be used to reduce the network bandwidth requirements as well as PDC latency. In addition, this paper also discusses various desired features to handle communication network contingencies, e.g. GPS fail, loss of PMU communication, PMU streams with different data rates and different latency; lost synchrophasor data; diagnostics and their notification at upstream devices, etc.
机译:全球数家主要的电力公司正在大规模部署广域测量系统(WAMS)。这正在影响国际标准协会(IEEE / IEC)和会议(NASPI / CIGRE / PSRC)上的一些活动和讨论,以设计出有效但最佳的WAMS体系结构。本文介绍了相量数据集中器(PDC)技术的最新进展,以实现适合用途的WAMS体系结构。提出的准则可用于减少网络带宽需求以及PDC延迟。此外,本文还讨论了处理通信网络意外情况的各种所需功能,例如: GPS失败,PMU通信丢失,具有不同数据速率和不同延迟的PMU流;丢失同步相量数据;诊断及其在上游设备等处的通知

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