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首页> 外文期刊>Trends in Ecology & Evolution >Predictive Formulas to Improve Transformer Protection During Inrush Current Using the Proposed DC Equivalent Circuit
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Predictive Formulas to Improve Transformer Protection During Inrush Current Using the Proposed DC Equivalent Circuit

机译:采用所提出的直流等效电路改善浪涌电流变压器保护的预测公式

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摘要

Switching-on a power transformer creates energizing inrush current (EIC) which in turn leads to sympathetic inrush current (SIC) in adjacent in-service transformers (ITs). Sympathetic inrush current changes the waveform and prolongs the duration of its origin EIC. This makes the analysis and estimation of EIC complicated. Occasionally, the stress of EIC can cause internal short circuit in energizing transformer. Detecting short-circuit fault current during EIC is a challenge for transformer differential protection. On the other hand, SIC may mislead the earth-fault protection of in-service-transformer. This paper, first, proposes a new dc equivalent-circuit based on the dc-component of inrush current, which is efficient in analyzing concurrent EIC and SIC. Next, based on this equivalent circuit, new predictive formulas for EIC and SIC are derived. By employing these formulas, the transformer internal fault during inrush current can be detected based on the comparison between the predicted and measured waveforms, which prevents differential protection from fail-to-trip. Also, the predicted SIC waveform can be compared with the measured waveform to prevent IT earth-fault protection from mal-trip, during inrush current. Finally, the proposed equivalent circuit and formulas are verified using the EMTP simulation results of a real grid, under different system conditions.
机译:打开电源变压器会产生激励浪涌电流(EIC),其又导致相邻的在役变压器(其)中的交感神经浪涌电流(SIC)。交感神经浪涌电流会改变波形并延长其起源EIC的持续时间。这使得EIC复杂的分析和估计。偶尔,EIC的应力会导致通电变压器中的内部短路。在EIC期间检测短路故障电流是变压器差动保护的挑战。另一方面,SIC可能会误导适用于维修机的地球故障保护。本文首先提出了一种基于浪涌电流的DC组件的新型DC等效电路,其在分析并发EIC和SIC方面是有效的。接下来,基于该等效电路,推导出EIC和SiC的新预测公式。通过采用这些公式,可以基于预测和测量波形之间的比较来检测浪涌电流期间的变压器内部故障,这防止了防止差分保护失败跳闸。此外,可以将预测的SIC波形与测量的波形进行比较,以防止IRUSH电流中的MAR-TRUE免受接地故障保护。最后,在不同的系统条件下,使用真实网格的EMTP仿真结果验证所提出的等效电路和公式。

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