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Estimation of surface breakdown voltage of solid/gas composite insulation with embedded electrode

机译:嵌入式电极固/气复合绝缘表面击穿电压的估算

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摘要

Solid insulated switchgear (SIS) has been developed as a substitution for medium voltage SF6 gas insulated switchgear. Its main circuits including a vacuum interrupter are coated with epoxy resin, therefore, a solid/gas insulation system is formed. For further miniaturization and higher stress design of SIS, the authors investigated on the surface insulation of the solid/gas insulation system containing an embedded electrode. In the present study, the surface breakdown voltage was estimated based on the surface discharge propagation characteristics. From the measurement of the surface flashover voltage on a dielectric against the surface distance, the relation between the surface flashover voltage and the surface distance was found to be expressed with an equation derived from the empirical equation presented by Toepler. Then, the surface breakdown voltage was estimated based on the obtained equation. The estimated values were compared with the experimental data obtained varying a parameter of the radius of the embedded electrode, thickness of the epoxy resin plate or the radius of the plate. As a result, a good correlation was obtained. Therefore, the estimation method of the surface breakdown voltage on the solid/gas insulation with embedded electrode was established.
机译:已开发出固态绝缘开关设备(SIS)来替代中压SF6气体绝缘开关设备。其主要电路(包括真空灭弧室)均涂有环氧树脂,因此形成了固体/气体绝缘系统。为了使SIS进一步小型化和提高应力设计,作者对包含嵌入式电极的固体/气体绝缘系统的表面绝缘进行了研究。在本研究中,根据表面放电传播特性估算了表面击穿电压。从电介质上的表面闪络电压相对于表面距离的测量中,发现表面闪络电压与表面距离之间的关系由从Toepler提出的经验方程式导出的方程式表示。然后,基于所获得的方程式来估计表面击穿电压。将估计值与通过改变埋入电极的半径,环氧树脂板的厚度或板的半径的参数而获得的实验数据进行比较。结果,获得了良好的相关性。因此,建立了埋入式电极固/气绝缘表面击穿电压的估算方法。

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