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Dynamic monitoring and control system based on synchronized phasor measurement in Heilongjian Eastern Power System

机译:基于同步相量测量的黑龙江省东部电网动态监控系统

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This system consists of 5 substations, the real-time data and control commands are transmitted between substations through a microwave telecommunication system. The Global Positioning System (GPS) is used to provide an accurate time signal to all substations so that all data can be sampled synchronously at each station. As a result, all recorded data and measured phasors can be analyzed by referring to a common time axis. This system was put into service in 1996 to monitor the Heilongjian Eastern Electric System and to increase its stability by determining the amount of generation to be cut off through the measured frequency. It is the first time China has carried out such a large GPS application in a power system. The field tests show that the strategy based on "off-line simulation and on-line search" can be finished within 180 ms after the fault occurred. This paper shows and analyzes some fault data recorded over two years and estimates the performance of this system. This paper also introduces the methodology to monitor operating states of the power system by using the PQ figure in the generator, the space vector diagram for voltage and phasor diagram based on synchronized phasor measurement (SPM).
机译:该系统由5个变电站组成,实时数据和控制命令通过微波电信系统在变电站之间传输。全球定位系统(GPS)用于向所有变电站提供准确的时间信号,以便可以在每个变电站同步采样所有数据。结果,可以通过参考公共时间轴来分析所有记录的数据和测量的相量。该系统于1996年投入使用,以监控黑龙江东部电力系统,并通过确定要通过测量频率切断的发电量来提高其稳定性。这是中国第一次在电力系统中进行如此大的GPS应用。现场测试表明,基于“离线仿真和在线搜索”的策略可以在故障发生后的180 ms内完成。本文显示并分析了两年内记录的一些故障数据,并估计了该系统的性能。本文还介绍了通过使用发电机中的PQ图来监视电力系统运行状态的方法,基于同步相量测量(SPM)的电压空间矢量图和相量图。

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