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An Improved Physical-Stochastic Model for Simulating Electrical Tree Propagation in Solid Polymeric Dielectrics

机译:固体聚合物电介质中模拟电树繁殖的改进的物理 - 随机模型

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摘要

The dielectric breakdown of solid polymeric materials is due to the inception and propagation of electrical trees inside them. The remaining useful life of the solid dielectrics could be determined using propagation simulations correlated with non-intrusive measurements such as partial discharges (PD). This paper presents a brief review of the different models for simulating electrical tree propagation in solid dielectrics. A novel improved physical-stochastic model is proposed, which allows quantitatively and qualitatively analyzing the electrical tree propagation process in polymeric dielectrics. Simulation results exhibit good agreement with measurements presented in the literature. It is concluded that the model allows adequately predicting the tree propagation behavior and additional experimental analyses are required in order to improve the model accuracy.
机译:固体聚合物材料的介电击穿是由于它们内部的电气树的初始和繁殖。可以使用与诸如部分放电(PD)的非侵入式测量相关的传播模拟来确定固体电介质的剩余使用寿命。本文介绍了在实体电介质中模拟电气树传播的不同模型的简要介绍。提出了一种新的改进的物理 - 随机模型,其允许定量和定性地分析聚合物电介质中的电树传播过程。仿真结果表现出与文献中提出的测量结果良好的一致性。结论是,该模型允许充分预测树传播行为,并且需要额外的实验分析以提高模型精度。

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