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Advanced EMS applications using synchrophasor systems for grid operation

机译:使用同步相量系统进行电网运行的高级EMS应用

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The 10th anniversary of the 2003 North-East blackout reminds us the challenges faced and solutions proposed. Several converging technologies are reaching control center operations. Synchronized phasor measurements enable readings of voltages and currents across the power system and provide a more accurate state estimation than the existing Energy Management System (EMS). A synchrophasor system covering a large footprint coupled with fast sampling rates may be best served by a distributed architecture to process data for new advanced algorithms and for historical analysis. The architecture is divided into three levels for data management, functional analysis, and interface to an existing EMS. The present architecture is summarized as local substation data concentrators (PDCs) and control center PDCs that are connected to the existing EMS. Implementation experiences with the execution of state estimation at substation level, communication level, as well as the EMS level by PG&E are presented to demonstrate EMS evolution as part of technological developments.
机译:2003年东北大停电10周年使我们想起了面临的挑战和提出的解决方案。几种融合技术正在运用于控制中心运营。同步相量测量可读取电源系统中的电压和电流,并提供比现有能源管理系统(EMS)更准确的状态估计。分布式体系结构最好为覆盖大占用空间并具有快速采样速率的同步相量系统提供服务,以处理新的高级算法和历史分析的数据。该体系结构分为三个级别,分别用于数据管理,功能分析和与现有EMS的接口。本体系结构概括为连接到现有EMS的本地变电站数据集中器(PDC)和控制中心PDC。介绍了在PG&E的变电站级,通信级以及EMS级执行状态估计的实施经验,以证明EMS作为技术发展的一部分而不断发展。

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