互感器对电网符合性谐波测量的影响

R. Murray, J. D. de Kock
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引用次数: 11

摘要

随着可再生能源在南非的普及,特别是光伏和风力发电厂的普及,电力质量对公用事业来说变得越来越重要。这也影响了测量的准确性。对于独立电力生产商(ipp)来说,这些测量是用来证明其符合国家电网规范的。不准确的结果可能会对IPP和为收回资本支出而产生的预期收入造成毁灭性影响。在证明合规性的过程中要考虑的许多电磁兼容性因素之一是这些工厂的谐波排放。仪表变压器是谐波测量电路的重要组成部分。因此,为了减少测量中的不确定度,确保这些仪器变压器的频率响应和所涉及的误差被量化是很重要的。本文参考了该领域电流互感器和电压互感器的研究文献。这些研究表明,在使用仪器变压器进行谐波测量时,会产生幅度和相位角的显著误差。然而,在这些变压器的表征过程中,没有提到如何考虑测量误差。本文的重点是在量化这些测量误差时要考虑的方面。当变压器用于谐波测量时,特别是在可再生能源工厂应用中,在开发一种表征和补偿测量不确定性的方法时,得出了一个重要的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Instrument transformers influence on harmonic measurements for grid code compliance
With an increased penetration of renewable energy sources in South Africa, especially photovoltaic (PV) and wind farm generating plants, power quality is becoming more important for utilities. With that also the accuracy of the measurements involved. For independent power producers (IPPs), these measurements are used to prove compliance to the national grid codes. Inaccurate results could prove devastating for an IPP and the predicted revenue to be generated to recover capital expenditure. One of the many electro-magnetic compatibility factors to be considered in this process of proving compliance, is the harmonic emissions of these plants. Instrument transformers form a key part of the harmonic measuring circuit. It is therefore important to ensure that the frequency response of these instrument transformers and the errors involved are quantified, in order to reduce the uncertainty in measurements. This paper considers literature of studies conducted on both current transformers and voltage transformers in this field. These studies show that significant errors, both in amplitude and phase angle, are involved when using instrument transformers for harmonic measurements. However, no mention is made on how the measuring errors can be taken into account during the characterization of these transformers. This paper focused on the aspects to be considered when quantifying these errors in measurements. A conclusion is drawn as to the important aspects to consider when developing a method to characterize and compensate for measuring uncertainties when instrument transformers are used for harmonic measurements, especially in renewable energy plant applications.
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