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Computation of AC flashover voltage of polluted HV insulators using a dynamic arc model

机译:利用动态电弧模型计算受污染高压绝缘子的交流闪络电压

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Flashover of polluted insulators is still a serious threat to the safe operation of a power transmission system. Despite the extensive investigations carried out on the pollution performance of the insulators, the flashover characteristics are not well understood. Recent theoretical and experimental research on polluted insulators is yet to yield a perfect generalized mathematical model which can accurately predict critical flashover voltage. In this paper, the pollution flashover on the high voltage insulators has been investigated and a new dynamic arc model has been proposed. For this purpose, firstly the concerned insulators' scaled shapes were partitioned into triangular elements, then finite element method (FEM) was implemented for obtaining potential distribution on the surface of insulator and finally flashover voltages were determined by using the developed arc model. For a number of common insulators of different geometries the computed results of flashover voltages on the selected string insulators have been compared to experimental results of some other research. Pollution flashover behaviors of the insulators have been taken into consideration and the validity of the model was thus verified.
机译:污染绝缘子的闪络仍然是对输电系统安全运行的严重威胁。尽管已对绝缘子的污染性能进行了广泛的研究,但对闪络特性的了解却很少。最近关于污染绝缘子的理论和实验研究尚未产生可以准确预测临界闪络电压的理想的广义数学模型。本文研究了高压绝缘子上的污染闪络,并提出了一种新的动态电弧模型。为此,首先将所关注的绝缘子按比例缩放的形状划分为三角形元素,然后采用有限元方法(FEM)获得绝缘子表面上的电势分布,最后使用建立的电弧模型确定闪络电压。对于许多不同几何形状的常用绝缘子,已将所选串式绝缘子上闪络电压的计算结果与其他一些研究的实验结果进行了比较。考虑了绝缘子的污染闪络行为,从而验证了模型的有效性。

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