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AC/DC Current Transformer With Single Winding

机译:单绕组AC / DC电流互感器

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Dc currents in power grids are created by induction from geomagnetic variations and newly also by transformerless power inverters installed in solar power stations. These currents may not only cause serious errors of current transformers (CTs) measuring the consumed energy but also cause overload of distribution transformers that may result in blackout. Installing dc current sensors into the grid would be very expensive. We have shown that the existing CTs in the grid can be used in the fluxgate mode to simultaneously measure dc current. Utilizing this mode, the CT ac error is inevitably increased. We analyze the sources of these errors and show techniques to reduce them. The experiments were made on the off-the-shelf 500 A/5 A CT. We show that the uncompensated 5 A dc current without compensation increases its ac amplitude error from 0.1% to 1%. We also found that the dominant additional error was caused by the increased burden. With the optimized design of the excitation circuit, it is possible to sense a dc current component with 10% accuracy and reduce the additional ac error from previously reported 1.5% to 0.1% when the dc current component is compensated. This technique can be widely used to improve the ac accuracy of the existing CTs.
机译:电网中的直流电流是由地磁变化引起的感应产生的,新近也由安装在太阳能发电站中的无变压器功率逆变器产生的。这些电流不仅可能导致测量消耗的能量的电流互感器(CT)出现严重错误,而且还会导致配电变压器过载,从而导致停电。将直流电流传感器安装到电网中将非常昂贵。我们已经表明,电网中现有的CT可以在磁通门模式下使用,以同时测量直流电流。使用此模式,不可避免地会增加CT交流误差。我们分析了这些错误的来源,并展示了减少错误的技术。实验是在现成的500 A / 5 A CT上进行的。我们表明,未经补偿的未经补偿的5 A直流电流会将其交流幅度误差从0.1%增加到1%。我们还发现,主要的附加错误是由负担增加引起的。利用激励电路的优化设计,可以在补偿直流电流分量时以10%的精度感测直流电流分量,并将额外的交流误差从先前报告的1.5%降低到0.1%。该技术可广泛用于提高现有CT的交流精度。

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