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Morphological Lifting Scheme for Current Transformer Saturation Detection and Compensation

机译:电流互感器饱和检测与补偿的形态学提升方案

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摘要

Current transformer (CT) saturation can cause protective relay mal-operation or even prevent tripping. The wave shape of the secondary current is severely distorted as the CT is forced into deep saturation when the residual flux in the core adds to the flux change caused by faults. In this paper, a morphological lifting scheme is proposed to extract features contained in the waveform of the signal. The detection of the CT saturation is accurately achieved and the points of the inflection, where the saturation begins and ends, are found with the scheme used. This paper also presents a compensation algorithm, based upon the detection results, to reconstruct healthy secondary currents. The proposed morphological lifting scheme and compensation algorithm are demonstrated on a sample power system. The simulation results clearly indicate that they can successfully detect and compensate the distorted secondary current of a saturated CT with residual flux.
机译:电流互感器(CT)饱和会导致保护继电器误动作甚至阻止跳闸。当铁芯中的剩余磁通量增加了由故障引起的磁通量变化时,由于CT被迫进入深度饱和,因此次级电流的波形严重失真。在本文中,提出了一种形态学提升方案,以提取信号波形中包含的特征。可以准确实现CT饱和度的检测,并使用所使用的方案找到饱和度开始和结束的拐点。本文还提出了一种基于检测结果的补偿算法,以重建健康的二次电流。在样本电力系统上论证了提出的形态学提升方案和补偿算法。仿真结果清楚地表明,它们可以成功地检测和补偿带有剩余磁通的饱和CT的次级电流失真。

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