Air-Gapped Current Transformer simulation and accuracy assessment

Luis Felipe Ceron Oliver, Qing Wang, D. Zeze
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Abstract

The implementation of smart grids makes it necessary to have reliable and efficient measuring devices. Current sensors used for metering purposes in the grid must be accurate enough to overcome new challenges that power networks face such as injection of undesirable Direct Current (DC) in the system. A Current Transformer (CT) is a transformer widely used to measure current in an electrical circuit. This paper describes the modelling and simulation of a CT with a variable air gap, provides different results of cases with different air gap ratios and evaluates the respective primary and secondary currents in each case according to the standard IEC for instrument transformers. Results show that if an air gap is present, the transformer only reached an accuracy class of 0.5 when the air gap ratio is 0.001.
气隙电流互感器仿真及精度评估
智能电网的实施需要可靠、高效的测量设备。用于电网计量目的的电流传感器必须足够精确,以克服电网面临的新挑战,例如在系统中注入不受欢迎的直流(DC)。电流互感器(CT)是一种广泛用于测量电路电流的变压器。本文描述了可变气隙CT的建模和仿真,给出了不同气隙比情况下的不同结果,并根据仪表变压器的IEC标准评估了每种情况下各自的一次和二次电流。结果表明,如果存在气隙,当气隙比为0.001时,变压器仅达到0.5的精度等级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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