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Partial discharge phenomena within an artificial void in cable insulation geometry: experimental validation and simulation

机译:电缆绝缘几何图形中人工空隙内的局部放电现象:实验验证和模拟

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摘要

In the presence of void in cable insulation, repetition of partial discharge (PD) occurrences is one of the main sources of insulation degradation, which may lead to complete breakdown. Therefore, it is important to monitor the condition of cable insulation through PD measurement. Replicating PD measurement on a test object with the presence of a void within cable insulation may help a better understanding of PD characteristics within cable insulation to be achieved. Therefore, in this work, test samples of cable insulation geometry containing an artificial void were prepared in the laboratory for PD experiment. The PD measurements were done as a function of void size and applied voltage. A physical model of PD activities within an artificial void in cable insulation geometry was also designed using finite element analysis method. The model was developed by considering PD occurrences within non-uniform electric field distribution in the void and charge movement along the void surface. The model was applied for simulation of PDs within the void in cable insulation geometry to increase the understanding on PD physical phenomena. This includes the impact of distribution of void surface charge on the distribution of the electric field within the void through comparison with the captured measurement results.
机译:电缆绝缘层中存在空隙时,重复发生局部放电(PD)是绝缘层退化的主要来源之一,这可能导致彻底击穿。因此,通过PD测量监视电缆绝缘状况非常重要。在电缆绝缘层中存在空隙的情况下,在测试对象上重复进行PD测量可有助于更好地理解要实现的电缆绝缘层中的PD特性。因此,在这项工作中,在实验室中为PD实验准备了包含人造空隙的电缆绝缘几何形状的测试样品。根据空隙尺寸和施加电压进行PD测量。还使用有限元分析方法设计了在电缆绝缘几何形状的人工空隙内的局部放电活动的物理模型。通过考虑空隙中非均匀电场分布中的PD发生以及沿空隙表面的电荷运动来开发模型。该模型用于模拟电缆绝缘几何体中空隙中的局部放电,以增加对局部放电物理现象的理解。通过与捕获的测量结果进行比较,这包括空隙表面电荷的分布对空隙内电场分布的影响。

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