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Filter design masks for C37.118.1a-compliant frequency-tracking and fixed-filter M-class Phasor Measurement Units (PMUs)

机译:符合C37.118.1a的频率跟踪和固定滤波器M级相量测量单元(PMU)的滤波器设计模板

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摘要

The new amendment to the Phasor Measurement Unit (PMU) standard C37.118.1a makes several significant changes, compared to the standard C37.118.1 (2011). This paper highlights some of the most important changes, with a particular emphasis applied to how those changes relate to the way that an M-class PMU filter needs to be designed. In particular, there is a delicate trade-off between passband flatness (the bandwidth test) and stopband rejection in the Out-Of-Band (OOB) test. For a PMU algorithm using frequency-tracking and adaptive filters, it is shown that passband flatness can be relaxed to about 2.5dB, but that the stopband needs to begin up to 14.8% closer to 0 Hz than for a fixed-filter PMU. This is partly due to the exact procedures of the C37.118.1a “OOB” testing, and partly due to the adaptive nature of a frequency-tracking PMU filter section. Both the above lead to modified filter masks being required for frequency-tracking devices, compared to the mask required for fixed-filter devices. The M-class PMU with reporting rate 25Hz is the most difficult to design, for reasons given in this paper. The validity of the masks is shown using filter bode plots and simulated C37.118.1a test results of a fixed-filter and frequency-tracking device which have been designed to meet the masks defined in this paper.
机译:相较于标准C37.118.1(2011),对相量测量单元(PMU)标准C37.118.1a的新修订进行了几项重大更改。本文重点介绍了一些最重要的更改,并特别强调了这些更改如何与M级PMU滤波器的设计方式相关。尤其是,在带外(OOB)测试中,通带平坦度(带宽测试)和阻带抑制之间存在微妙的权衡。对于使用频率跟踪和自适应滤波器的PMU算法,已表明通带平坦度可以放宽至约2.5dB,但与固定滤波器PMU相比,阻带必须从0 Hz开始最高达14.8%。这部分是由于C37.118.1a“ OOB”测试的确切程序,部分是由于频率跟踪PMU滤波器部分的自适应特性。与固定滤波器设备所需的掩模相比,上述两种情况都导致频率跟踪设备需要改进的滤波器掩模。由于本文给出的原因,报告速率为25Hz的M级PMU是最难设计的。使用滤波器的波德图和固定滤波器和频率跟踪设备的模拟C37.118.1a测试结果证明了掩模的有效性,这些滤波器的设计符合本文定义的掩模。

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