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A Novel Hybrid Differential Algorithm for Turn to Turn Fault Detection in Shunt Reactors

机译:并联电抗器匝间故障检测的新型混合差分算法

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Turn to turn faults usually cause smaller changes in the phase currents of a shunt reactor when fewer turns are involved. Designing a sensitive and reliable algorithm for turn to turn fault detection in shunt reactors still remains a challenge. In this paper, a novel hybrid differential algorithm has been proposed to detect turn to turn faults in shunt reactors. The proposed algorithm calculates the difference between normalized negative sequence terminal voltage and normalized negative sequence reactor current phasors. This difference value is used for detecting turn to turn fault in shunt reactors. The proposed algorithm can also identify the faulty phase. This is a significant improvement with respect to the existing negative or zero sequence based methods. The proposed algorithm does not need neural CT. Impedance values of the shunt reactors are also not needed in the calculations. The proposed algorithm can be applied to both solidly and impedance grounded shunt reactors. The performance of the proposed algorithm is evaluated using PSCAD simulations. It is found that the proposed algorithm is sensitive enough to detect lower level turn to turn faults. The proposed algorithm performs satisfactorily during system unbalances, reactor energizations, external faults, off-nominal frequency, and switch onto fault scenarios, etc.
机译:当匝数较少时,匝间故障通常会导致并联电抗器的相电流变化较小。为并联电抗器中的转弯故障检测设计灵敏而可靠的算法仍然是一个挑战。本文提出了一种新颖的混合差分算法来检测并联电抗器的匝间故障。所提出的算法计算归一化负序端电压和归一化负序电抗器电流相量之间的差。该差值用于检测并联电抗器中的匝间故障。所提出的算法还可以识别故障阶段。相对于现有的基于负序列或零序列的方法,这是一个重大改进。所提出的算法不需要神经CT。计算中也不需要并联电抗器的阻抗值。所提出的算法可以应用于固体和阻抗接地的并联电抗器。使用PSCAD仿真评估了所提出算法的性能。发现所提出的算法足够灵敏以检测较低水平的匝间转向故障。所提出的算法在系统不平衡,电抗器通电,外部故障,偏离标称频率以及切换到故障场景等情况下都能令人满意地执行。

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