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The influence of low resistance grounding system in delta side of transformer on differential protection and its solutions

机译:变压器三角洲低阻接地系统对差动保护的影响及解决方案

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In the system with lead in delta side of transformer grounded by low resistance, differential current arises in the traditional differential protection when having grounding fault beyond protected zone in this side, which may cause differential protection mal-operation. The paper analyzes the two schemes by contrast. The first scheme is differential protection zero sequence elimination in delta side and the other is setting differential threshold value higher than the maximal ground fault zero sequence current. According to the study, the first scheme eliminates the unbalanced differential current effectively when having grounding fault beyond protected zone in delta side, and improves the reliability of differential protection greatly. For the transformer with the voltage of 35kV in delta side, the first scheme lowers the differential threshold value and improves the sensitivity of differential protection when having single-phase grounding fault in protected zone. For the transformer with the voltage of 10kV (or 20kV) in delta side, none of these two schemes can reflect the single-phase grounding fault in protected zone sensitively.
机译:在变压器三角洲的铅通过低电阻接地的系统中,当传统的差动保护装置的接地故障超出该保护区的一侧时,在差动保护装置中会产生差动电流,这可能会导致差动保护装置误动作。对比分析了两种方案。第一种方案是在三角形侧消除差动保护零序,另一种方案是将差动阈值设置为高于最大接地故障零序电流。据研究,第一种方案有效地消除了三角洲保护区以外接地故障时的不平衡差动电流,大大提高了差动保护的可靠性。对于三角形侧电压为35kV的变压器,当保护区内发生单相接地故障时,第一种方案降低了差动阈值,提高了差动保护的灵敏度。对于三角形侧的电压为10kV(或20kV)的变压器,这两种方案均不能灵敏地反映保护区内的单相接地故障。

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