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A Novel Modular Positive-Sequence Synchrophasor Estimation Algorithm for PMUs

机译:PMU的模块化正序同步相量估计新算法

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A novel modular positive-sequence estimation algorithm for phasor measurement units (PMUs) is described in this paper with a focus on the restrictions imposed by the IEEE C37.118.1–2011 standard. The first stage consists in a three-phase demodulator which allows us to separate the positive-sequence from the negative-sequence signal in the frequency domain and to eliminate the zero-sequence signal. The second stage is a prefilter that mitigates noise and interference, thus relaxing the filtering requirements of the following stage. The suitability of a linear-phase FIR filter is shown and a comparison of single and multistage designs is presented. On the third stage, a digital state-space-based extension of a synchronous reference frame-phase-locked loop is used for tracking of amplitude, phase, frequency, and rate of change of frequency. It is shown that a phase predictor inside the loop is required. The fourth stage is a compensation algorithm which takes into account the narrowband nature of the input signal to perform an accurate compensation of the filter effects on the signal of interest. Analytical properties of the system are then presented, providing insight into the main factors that affect global performance. Finally, a strict evaluation of the system is presented for both M and P class PMU.
机译:本文针对相量测量单元(PMU)介绍了一种新颖的模块化正序估计算法,重点关注IEEE C37.118.1–2011标准所施加的限制。第一级包括一个三相解调器,它使我们能够在频域中将正序信号与负序信号分开,并消除零序信号。第二阶段是预过滤器,可减轻噪声和干扰,从而放松下一阶段的过滤要求。给出了线性相位FIR滤波器的适用性,并对单级和多级设计进行了比较。在第三阶段,同步参考帧锁相环的基于数字状态空间的扩展用于跟踪幅度,相位,频率和频率变化率。结果表明,回路内部需要一个相位预测器。第四阶段是一种补偿算法,该算法考虑了输入信号的窄带特性,以对感兴趣信号的滤波器效果进行精确补偿。然后介绍系统的分析属性,以深入了解影响全局性能的主要因素。最后,对M级和P级PMU都对系统进行了严格的评估。

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