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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Understanding electrical treeing phenomena in XLPE cable insulation under harmonic AC voltages adopting UHF technique
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Understanding electrical treeing phenomena in XLPE cable insulation under harmonic AC voltages adopting UHF technique

机译:使用UHF技术了解谐波AC电压下XLPE电缆绝缘中的电树现象

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摘要

In the present study, impact of high frequency ac voltage and harmonics in ac voltages on treeing were studied. When the applied voltage is high, a bush type tree forms irrespective of frequency of the supply voltage. Influence of harmonics on shape of tree formed indicates that a voltage wave with high total harmonic distortion have characteristics much similar to high frequency ac voltage. It is observed that the tree inception time is much lower with 11th harmonic ac voltages with higher THD. Presence of odd harmonics of equal magnitude, irrespective of amount of total harmonic distortion, the shape of the tree formed is almost same as the tree generated with 50 Hz ac voltage. The injected PD current pulses during treeing process have rise time of few nanoseconds. The UHF signals generated during tree growth (at the point of inception and propagation) have signal bandwidth in the range of 1-2 GHz. Measure of UHF signal magnitude during treeing process could help one to classify the shape of tree formed. Weibull distribution studies were carried out to estimate the life of XLPE cable insulation failure due to electrical treeing under different harmonic ac voltages. Independent higher order harmonic ac voltages with increase in total harmonic distortion reduce the life of cable insulation due to electrical treeing.
机译:在本研究中,研究了高频交流电压和交流电压中的谐波对树木的影响。当施加的电压高时,无论电源电压的频率如何,都会形成灌木型树。谐波对形成的树形的影响表明,具有高总谐波失真的电压波具有与高频交流电压非常相似的特性。可以看出,具有较高THD的11次谐波交流电压时,树的起始时间要短得多。不论总谐波失真量如何,都存在大小相等的奇次谐波,所形成的树的形状几乎与以50 Hz交流电压产生的树相同。在树状过程中注入的PD电流脉冲的上升时间为几纳秒。在树木生长过程中(在开始和传播时)生成的UHF信号的信号带宽为1-2 GHz。在树化过程中对UHF信号强度的测量可以帮助人们对形成的树的形状进行分类。进行了威布尔分布研究,以估计在不同谐波交流电压下由于电树引起的XLPE电缆绝缘失效的寿命。随着总谐波失真的增加,独立的高阶谐波交流电压会缩短由于电树引起的电缆绝缘寿命。

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