首页> 外文会议>Electrical Insulation and Dielectric Phenomena, 2000 Annual Report Conference on >Temporal evolution of electric field distribution and energy dissipation in a metallized polymer film capacitor under DC, AC or nonsinusoidal voltage stresses
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Temporal evolution of electric field distribution and energy dissipation in a metallized polymer film capacitor under DC, AC or nonsinusoidal voltage stresses

机译:在直流,交流或非正弦电压应力下,金属化聚合物膜电容器中电场分布和能量耗散的时间演化

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Temporal evolution of electric field distribution and its resulting energy dissipation in a metallized polymer film capacitor is an important indicator of the scale of breakdown discharges within the capacitor unit when it is subjected to an external voltage stress. To gain an understanding of the dependence of breakdown discharges on the characteristics of the external voltage, an equivalent circuit model is developed to simulate the dynamics of the field distribution under three different types of voltage stresses, namely DC, AC, and non-sinusoidal. Pattern of the electrode segmentation is taken into account by means of an effective surface resistance. Also included are the effects of the number of electrode segments cross a given length. Electric field distribution and its temporal evolution are computed and the peak electric field is calculated to provide an indication of the likelihood of surface flashover between two adjacent current gates. In addition, electric energy dissipation is calculated to assess potential temperature rise within the capacitor and so its implication on uncoupling of distant current gates. These calculations are repeated for different values of surface resistance and segmentation number such that certain guidelines for capacitor design can be drawn.
机译:在金属化的聚合物膜电容器中,电场分布的时间演变及其导致的能量耗散是电容器单元在受到外部电压应力时击穿放电的规模的重要指标。为了了解击穿放电对外部电压特性的依赖性,开发了一个等效电路模型来模拟三种不同类型的电压应力(直流,交流和非正弦)下的场分布动态。借助于有效的表面电阻来考虑电极分段的图案。还包括电极段的数量越过给定长度的影响。计算电场分布及其时间演变,并计算峰值电场,以提供两个相邻电流门之间表面闪络的可能性的指示。此外,通过计算电能耗散来评估电容器内的潜在温升,因此其对远距离电流门的解耦也有影响。对不同的表面电阻值和分段数重复进行这些计算,以便可以得出电容器设计的某些准则。

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