通过电干扰回放的电力系统电流传感器比较

Aaron J. Wilson, B. Warmack, R. Kerekes, Patrick Brukiewa
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引用次数: 2

摘要

需要准确测量电力系统中高频内容的电压和电流现象越来越成为当务之急。随着渗透电网的分布式能源和非线性负荷的增加,与传统测量和计量应用相关的挑战也在增加。在本文中,三种市售的中压级电流传感器通过使用任意波形发生器“回放”通过传感器的参考信号,根据其谐波幅度和相位性能进行了表征。研究表明,尽管在噪声、共振和诱导相漂移方面各有优缺点,但所研究的三种传感器都不能完全忠实地复制所有输入信号。此外,适合度度量通常用于PMU模型验证,用于在研究事件周围的小窗口内生成传感器精度的并排比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Power System Current Sensors via Playback of Electrical Disturbances
The need to accurately measure high-frequency content in power system voltage and current phenomena is increasingly becoming more of a priority. As the amount of distributed energy resources (DER) and nonlinear loads penetrating the grid increases, so do challenges associated with traditional measurement and metering applications. In this paper, three commercially-available medium-voltage-level current sensors are characterized in terms of their harmonic amplitude and phase performance against reference signals that are “played back” through the sensors through the use of an arbitrary waveform generator. It is shown that none of the three sensors studied are able to faithfully replicate all of the input signals completely, though there are advantages and disadvantages to each in terms of noise, resonance, and induced phase drift. Additionally, the Goodness-of-Fit metric, typically used for PMU model validation, is used to generate side-by-side comparisons of sensor accuracy over a small window around the events under study.
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