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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >A Fast and Accurate PMU Algorithm for P+M Class Measurement of Synchrophasor and Frequency
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A Fast and Accurate PMU Algorithm for P+M Class Measurement of Synchrophasor and Frequency

机译:快速,准确的PMU算法,用于同步相量和频率的P + M类测量

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摘要

The IEEE Standard C37.118.1 defines two performance classes, P and M, for phasor measurement units (PMUs), respectively for protection and monitoring oriented applications. The goal of this paper is to define an algorithm that allows the requirements of both classes to be met simultaneously, thus avoiding an selection of either the fast response time of class P or the accuracy of the class M. The designed PMU consists of two digital channels that process in parallel the acquired samples with different algorithms: the first one allows accurate measurements of steady state signals, while the second one is better suited to follow the fast signal changes. Then, a detector identifies the possible presence of dynamic situations and selects the most appropriate output for the actual operating condition. The validation of the solution, performed by means of simulations in all the static and dynamic conditions defined in the standard, confirms that the method is able to comply with all the limits indicated for both classes for synchrophasor and frequency measurement. As for the rate of change of frequency, again the compliance to P-class is fully verified, while for the M-class the only exception is represented by the tests with out-of-band disturbances.
机译:IEEE标准C37.118.1为相量测量单元(PMU)定义了两个性能等级P和M,分别用于保护和监控应用。本文的目的是定义一种算法,该算法可同时满足两个类别的要求,从而避免选择P类的快速响应时间或M类的精度。设计的PMU由两个数字组成。这些通道可以使用不同的算法并行处理采集的样本:第一个通道可以对稳态信号进行精确测量,而第二个通道更适合于跟踪快速的信号变化。然后,检测器识别动态情况的可能存在,并为实际操作条件选择最合适的输出。通过在标准中定义的所有静态和动态条件下通过仿真执行的解决方案验证,确认该方法能够满足为同步相量和频率测量两类指示的所有限值。至于频率的变化率,再次充分证明了对P级的符合性,而对于M级,唯一的例外是带外干扰测试。

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