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Synchrophasor Evaluation Based on Point-on-Wave Measurements

机译:基于波动点测量的同步素评估

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The accelerated synchrophasor measurements algorithm is presented. The algorithm allows to evaluate synchrophasors with less than one basic frequency cycle time delay. The reference points method was suggested to determine the synchronous frequency, with magnitude and phase being calculated by means of extrema interpolation. Tests were carried out using the simulation data and the real data of the 110 kV, 220 kV, and 500 kV grids steady states and transients. Requirements for time delay of the suggested algorithm and sampling rate of the initial measurements data were formulated. The total vector error minimum was selected as the optimality criterion. Since the algorithm was tested on the real data without actual reference values, the alternative method of defining the total vector error was proposed. The suggested algorithm can be applied to protection & control systems based on the reactive action (the so-called “1-After” concept, when the set values of protection & control systems are calculated after a disturbance), development of dynamic power system models and generators technical state assessment.
机译:提出了加速的同步擦药测量算法。该算法允许评估具有少于一个基本频率周期延迟的同步素仪。建议参考点方法确定同步频率,幅度和相位通过极值插值计算。使用模拟数据和110 kV,220kV和500 kV网格的实际数据进行测试,稳定状态和瞬态。制定了建议算法的时间延迟要求和初始测量数据的采样率。选择总矢量误差最小值作为最优标准。由于在没有实际参考值的实际数据上测试了算法,因此提出了定义总矢量错误的替代方法。建议的算法可以应用于基于反应动作的保护和控制系统(所谓的“1-之后”概念,当在干扰后计算的保护和控制系统的设定值),动态电力系统模型的开发和发电机技术国家评估。

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