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Space charge formation and its modified electric field under applied voltage reversal and temperature gradient in XLPE cable

机译:交联电压反向和温度梯度作用下交联聚乙烯电缆中的空间电荷形成及其修饰电场

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摘要

The results of space charge evolution in cross-linked polyethylene power cables under dc electrical field at a uniform temperature and during external voltage polarity reversal are presented in the paper. A mirror image charge distribution was observed in the steady state, but the pre-existing field altered the way in which the steady state charge distribution was formed from that obtaining when the cable was first polarized. Polarity reversing charge was generated in the middle of the insulation and moved towards the appropriate electrodes under the influence of a field in excess of the maximum applied field. Our results show that the mirror effect is a steady state effect that is due to cross-interface currents that depend only on the interface field and not its polarity. Measurements on cable sections with an elevated mean temperature and temperature gradient show that the interface currents are temperature dependent, and that differences between the activation energies of the interface and bulk currents can eliminate and possibly even invert the polarity of the space charge distribution.
机译:本文介绍了交联聚乙烯电力电缆在直流电场,均匀温度和外部电压极性反转过程中空间电荷演化的结果。在稳定状态下观察到镜像电荷分布,但是预先存在的场从电缆第一次极化时获得的状态改变了形成稳态电荷分布的方式。极性反转电荷在绝缘层的中间产生,并在超过最大施加电场的电场影响下移向适当的电极。我们的结果表明,镜像效应是稳态效应,这是由于跨界面电流仅取决于界面场而不取决于其极性。在平均温度和温度梯度升高的电缆段上进行的测量表明,界面电流与温度有关,界面的激活能与体电流之间的差异可以消除甚至可能颠倒空间电荷分布的极性。

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