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An investigation into partial discharge behaviour in impulse aged polymer insulation

机译:脉冲老化聚合物绝缘中局部放电行为的研究

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摘要

The objective of this research work is to investigate the behaviour of partial discharges (PD) in impulse aged solid polymer insulation. The investigation was conducted through studying key partial discharge characteristics such as; PDPRP (partial discharge phase resolved patterns), PD magnitude and PD inception voltage in impulse aged and non-aged insulation. Polymer insulation is widely used in electrical equipment such as motors, generators and power cables for high voltage insulation purposes. The insulation can be inevitably exposed to impulse voltages such as lightning. In this work the experimental investigation was performed on underground shielded power cable insulation. Lightning impulses, generated using a single stage impulse generator, were used to age 11 kV, 1 meter cross-linked polyethylene (XLPE) power cable test samples. Artificial cavity defects were then created in each sample. Subsequently, PD tests were performed using the IEC60270 test setup. Similar cavity defects were created in non-aged cable power samples and similar PD tests were conducted for comparative purposes. PD measurements assessed the effect of impulse ageing on PD phase-resolved patterns, PD magnitude and PD inception voltage. The results revealed that PDPRP had a distinct response to impulse ageing and this manifested as distinct changes in PD magnitude peak profiles of positive and negative half cycle patterns. PDPRP of non-aged samples contained a characteristic positive half cycle peak PD magnitude that is smaller than that of negative half cycle peak PD magnitude. The converse applied to the case of aged samples where the PDPRP negative peak magnitude was either larger or equal to the positive peak magnitude. Generally, PD magnitudes of non-aged test samples were larger and varied over a wider range than those in aged samples. PD inception voltage of the aged samples was slightly lower than that of non-aged test samples. The findings on the influence of impulse ageing of insulation on PD characteristics can be interpreted using conventional knowledge on PD mechanisms. These findings can be useful in PD diagnosis technology, for example; during continuous online PD monitoring changes in PD patterns could infer increased exposure of equipment under test to lightning voltage surges.
机译:这项研究工作的目的是研究脉冲老化固体聚合物绝缘中的局部放电(PD)行为。通过研究关键的局部放电特性进行了调查,例如:脉冲老化和非老化绝缘中的PDPRP(局部放电相位分辨模式),PD幅值和PD起始电压。聚合物绝缘广泛用于电气设备,例如电动机,发电机和电力电缆,以实现高压绝缘。绝缘层不可避免地要承受脉冲电压,例如雷电。在这项工作中,对地下屏蔽电力电缆绝缘层进行了实验研究。使用单级脉冲发生器产生的雷电脉冲用于老化11 kV 1米交联聚乙烯(XLPE)电力电缆测试样品。然后在每个样品中产生人造空腔缺陷。随后,使用IEC60270测试设置进行PD测试。在未老化的电缆功率样本中会产生类似的空腔缺陷,并且出于比较目的进行了类似的PD测试。 PD测量可评估脉冲老化对PD相分辨图案,PD幅度和PD起始电压的影响。结果表明,PDPRP对脉冲老化具有明显的响应,这表现为正负半周期模式的PD幅值峰轮廓发生明显变化。未老化样品的PDPRP包含特征性的正半周峰PD幅度小于负性半周峰PD幅度。相反,适用于PDPRP负峰值幅度大于或等于正峰值幅度的老化样本的情况。通常,与老化样品相比,未老化测试样品的PD幅度更大且变化范围更大。老化样品的PD起始电压略低于未老化样品的PD起始电压。绝缘的脉冲老化对局部放电特性的影响的发现可以使用局部放电机理的常规知识来解释。例如,这些发现可能对PD诊断技术有用。在连续在线局部放电监测期间,局部放电模式的变化可能会导致被测设备暴露于雷电浪涌的增加。

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