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Study of Transformer Resonant Overvoltages Caused by Cable-Transformer High-Frequency Interaction

机译:电缆变压器高频相互作用引起的变压器谐振过电压的研究

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Power transformers can fail from dielectric stresses caused by electromagnetic transients. In this paper, we focus on a special phenomenon where excessive overvoltages arise due to resonance. This situation can take place when a transformer on the high-voltage side is connected to a cable and the low-voltage side is unloaded. Very high overvoltages can then result on the low-voltage side from transient events that cause a weakly attenuated overvoltage on the cable with a dominant frequency matching a resonance peak in the transformer voltage ratio. Laboratory tests on a 11-kV/230 V distribution transformer show that a step voltage excitation on a 27-m cable produces 24-p.u. overvoltage on the open low-voltage side. The voltage waveforms are accurately reproduced by a black-box model obtained from frequency sweep measurements. Simulations show that overvoltages as high as 43 p.u. could occur with the most unfavorable cable length. It is further shown that the following situations can lead to high overvoltages on an unloaded transformer low-voltage side: 1) ground fault initiation at the far cable end, 2) cable energization from a busbar with several other cables connected, 3) cable energization from another cable with the same length, and 4) capacitor bank energization at the far cable end.
机译:电力变压器会因电磁瞬变而引起的介电应力而失效。在本文中,我们集中于一种特殊的现象,该现象会由于谐振而产生过大的过电压。当高压侧的变压器连接到电缆而低压侧没有负载时,会发生这种情况。然后,瞬态事件会在低压侧产生非常高的过电压,这些瞬变事件会在电缆上产生弱衰减的过电压,其主导频率与变压器电压比的谐振峰值相匹配。在11 kV / 230 V配电变压器上进行的实验室测试表明,在27米电缆上的步进电压激励会产生24-p.u。开路低压侧过压。通过从扫频测量获得的黑匣子模型可以准确地再现电压波形。仿真表明,过电压高达43p.u。最不利的电缆长度可能会发生这种情况。进一步表明,以下情况可能会导致空载变压器低压侧出现高过电压:1)在远端电缆端引发接地故障; 2)从汇流排与其他几条电缆相连的电缆通电; 3)电缆通电从另一根相同长度的电缆上取下; 4)电缆远端的电容器组通电。

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