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Compliance Analysis of PMU Algorithms and Devices for Wide-Area Stabilizing Control of Large Power Systems

机译:大型电力系统广域稳定控制的PMU算法和装置的符合性分析

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For the first time, IEEE Std. C37.118.1-2011 now provides metrics for PMU dynamic performance in terms of classes P and M filter designs. This paper attempts to determine whether fulfilling these requirements makes the PMU inherently well suited for stability control applications such as wide-area power system stabilizers (PSSs). In this aim, we considered two different frequency-adaptive approaches for class-P and -M compliance to ensure operation over a wide frequency range. The first is based on a finite-impulse response (FIR) with no overshoot in either the phase or the amplitude step responses, while the second is Kalman filter-based (EKF), which allows for a more refined out-of-band interference rejection at the cost of a phase step response with overshoot. These two approaches are benchmarked against Hydro-Québec`s existing PSS requirements and the conclusion is that the total vector error-based response time is not indicative of the phase lag within the frequency band of interest, nor of the 3-dB bandwidth under sinusoidal amplitude/frequency modulation phenomena, which are key criteria when specifying PSS PMUs. Using simulated and field-recorded network fault responses, we also show that a class-M PMU is unsatisfactory for wide-area stabilizing control, unless its performance is improved during the fault period, which is not covered by Std. C37.118.1-2011.
机译:第一次是IEEE标准。 C37.118.1-2011现在提供了P类和M类滤波器设计的PMU动态性能指标。本文试图确定是否满足这些要求使得PMU本质上非常适合稳定性控制应用,例如广域电力系统稳定器(PSS)。在这个目标中,我们考虑了两种不同的频率适应性方法来满足P级和-M级要求,以确保在较宽的频率范围内工作。第一个基于有限脉冲响应(FIR),在相位或幅度阶跃响应中均不存在过冲;第二个基于卡尔曼滤波器(EKF),可实现更精细的带外干扰以过冲的相位阶跃响应为代价来抑制噪声。这两种方法都针对魁北克水电公司现有的PSS要求进行了基准测试,得出的结论是,基于矢量误差的总响应时间既不表示目标频段内的相位滞后,也不表示正弦曲线下的3-dB带宽。幅度/频率调制现象,这是指定PSS PMU时的关键标准。使用模拟的和现场记录的网络故障响应,我们还表明,除非在故障期间性能有所提高,否则M类PMU不能满足广域稳定控制的要求,但Std并未涵盖。 C37.118.1-2011。

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