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Computer Simulation of Partial Discharges in Voids inside Epoxy Resins Using Three-Capacitance and Analytical Models

机译:使用三电容和分析模型的环氧树脂内部空隙局部放电的计算机模拟

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摘要

Epoxy resin is one of the most common polymers used as part of the insulation system in key electrical assets such as power transformers and hydrogenerators. Thus, it is necessary to know their main characteristics and to evaluate their condition when subjected to High Voltage (HV). A brief review of epoxy resins’ applications as insulating materials is made, their main characteristics as insulating media are given, the improvements with nano-fillers are summarized and the main electric properties required for Partial Discharges (PD) modelling are listed. In addition, the theoretical background and state-of-the-art of the three-capacitance and analytical models for simulating PD in solid dielectrics, such as epoxy resins, are reviewed in detail. Besides, their main advantages and disadvantages are presented, some critical arguments to the modelling procedure and assumptions are made and some improvements are proposed, taking into account conclusions made from other authors using models related to the PD development process. Finally, a case study was simulated using a modified three-capacitance model and the analytical model. The PD rate, q-φ-n diagrams and the minimum, mean and maximum PD electric charge are compared with measurements reported in the literature. Simulation results are in reasonable agreement with measured values. Capacitance models can be implemented in general purpose electric circuit simulation packages; however, its simulation is computationally expensive. Additional to this, although the modified three-capacitance model is not as accurate as finite elements or analytical models, results are also in agreement with real data.
机译:环氧树脂是电力变压器和水轮发电机等关键电气资产中用作绝缘系统一部分的最常见的聚合物之一。因此,有必要了解它们的主要特性并评估它们在经受高压(HV)时的状况。简要回顾了环氧树脂作为绝缘材料的应用,给出了其作为绝缘介质的主要特性,总结了纳米填料的改进,并列出了局部放电(PD)建模所需的主要电性能。此外,详细回顾了用于模拟固体介电材料(例如环氧树脂)中的局部放电的三电容和分析模型的理论背景和最新技术。此外,还介绍了它们的主要优点和缺点,并考虑了其他作者使用与PD开发过程相关的模型得出的结论,对建模过程和假设提出了一些关键论点并提出了一些改进建议。最后,使用改进的三电容模型和分析模型模拟了一个案例研究。将PD速率,q-φ-n图以及最小,平均和最大PD电荷与文献报道的测量值进行比较。仿真结果与测量值合理吻合。电容模型可以在通用电路仿真程序包中实现;然而,其仿真在计算上是昂贵的。除此之外,尽管修改后的三电容模型不如有限元或分析模型那么精确,但结果也与真实数据一致。

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