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A New Phasor Estimator for PMU Applications: P Class and M Class

机译:用于PMU应用的新相量估计:P级和M级

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摘要

Phasor measurement units (PMUs) are fundamental tools in the applications of modern power systems, where synchronized phasor estimations are needed. The accuracy and dynamic performance requirements for phasor, frequency, and rate of change of frequency (ROCOF) estimations are established in the IEEE Std. C37.118.1-2011 along with the IEEE Std. C37.118.1a-2014, where two PMU performances are suggested: P class filters for applications requiring fast response and M class filters for applications requiring high rejection to aliased signals. In this paper, a methodology to design new phasor estimators that satisfy the P class and M class requirements in PMUs is presented. The proposed methodology is based on finite impulse response filters, brick-wall filters, and complex filter design concepts, where frequency range, time performance, harmonic rejection and out-of-band interference requirements are considered in its design. A comparative analysis using the reference model given by the IEEE Std. C37.118.1 is presented. The results show the effectiveness of the phasor estimators under steady-state and dynamic conditions according to the PMU standard, making them suitable tools for applications in power systems.
机译:Phasor测量单元(PMU)是现代电力系统应用中的基本工具,其中需要同步的相量估计。在IEEE STD中建立了对量量,频率和变化率(ROCOF)估计变化率的准确性和动态性能要求。 C37.118.1-2011与IEEE STD一起。 C37.118.1A-2014,其中建议了两个PMU表演:P类过滤器,用于需要快速响应的应用程序和M级筛选器,用于需要高拒绝锯齿信号的应用程序。本文介绍了一种设计新的Phasor估计,满足PMU中P类和M级要求的方法。所提出的方法基于有限的脉冲响应滤波器,砖墙滤波器和复杂的过滤器设计概念,其中频率范围,时间性能,谐波抑制和带外干扰要求在其设计中被考虑。 IEEE STD给出的参考模型的比较分析。提出了C37.118.1。结果表明,根据PMU标准,Phasor估计在稳态和动态条件下的有效性,使其适用于电力系统中的应用工具。

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