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Improved Performance of M-Class PMUs Based on a Magnitude Compensation Model for Wide Frequency Deviations

机译:基于宽频偏差的幅度补偿模型,改进了M级PMU的性能

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摘要

Phasor measurement units (PMUs) are important elements in power systems to monitor and know the real network condition. In order to regulate the performance of PMUs, the IEEE Std. C37.118.1 stablishes two classes—P and M, where the phasor estimation is carried out using a quadrature oscillator and a low-pass (LP) filter for modulation and demodulation, respectively. The LP filter plays the most important role since it determines the accuracy, response time and rejection capability of both harmonics and aliased signals. In this regard and by considering that the M-class filters are used for more accurate measurements, the IEEE Std. presents different M-class filters for different reporting rates (when a result is given). However, they can degrade their performance under frequency deviations if the LP frequency response is not properly considered. In this work, a unified model for magnitude compensation under frequency deviations for all the M-class filters is proposed, providing the necessary values of compensation to improve their performance. The model considers the magnitude response of the M-class filters for different reporting rates, a normalized frequency range based on frequency dilation and a fitted two-variable function. The effectiveness of the proposal is verified using both static and dynamic conditions for frequency deviations. Besides that, a real-time simulator to generate test signals is also used to validate the proposed methodology.
机译:Phasor测量单位(PMU)是电力系统中的重要元素,用于监控和了解真实网络状况。为了规范PMU的性能,IEEE STD。 C37.118.1稳定了两个类-P和M,其中使用正交振荡器和低通(LP)滤波器进行相位估计,分别进行调制和解调。 LP滤波器播放最重要的作用,因为它决定了谐波和别名信号的准确性,响应时间和拒绝能力。在这方面并且考虑到M级滤波器用于更准确的测量,IEEE STD。为不同的报告速率提出不同的M级过滤器(给出了结果时)。但是,如果没有正确考虑LP频率响应,它们可以降低频率偏差下的性能。在这项工作中,提出了一个统一的,用于所有M类过滤器的频率偏差下的幅度补偿模型,提供了补偿的必要值,以提高它们的性能。该模型考虑了用于不同报告速率的M-Class滤波器的幅度响应,基于频率扩展的归一化频率范围和拟合的两个可变功能。使用静态和动态条件来验证提案的有效性,用于频率偏差。此外,还用于生成测试信号的实时模拟器来验证所提出的方法。

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