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Diagnosis of Discharge Pattern in Vacuum Interrupter by Shield Potential Measurement

机译:屏蔽电位测量诊断真空断续器中的放电模式

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In vacuum discharge, we found that the discharge developing time depends only upon the discharge path length in the case of gap discharge, whereas it is in inverse proportion to the square of the discharge inception voltage in the case of surface flashover. Based on the database for fundamental electrode configuration, we have proposed a diagnosing method of discharge pattern in vacuum interrupter (VI). In this paper, we applied the diagnosing method to an actual VI model and verified the effectiveness of the method. We measured the applied voltage and the shield potential with voltage dividers and the discharge current with high-frequency current transformer. We also captured the still image of discharge by a digital camera to verify the discharge path in the VI model with an observation aperture. By changing the electrode configuration in the VI model, we observed the various discharge patterns, e.g. the gap discharge between contacts, the surface flashover on the solid insulator through the shield, and the combination of them. Experimental results revealed that we succeeded in diagnosing the discharge pattern with the validity higher than 90%.
机译:在真空放电中,我们发现放电开发时间仅取决于间隙放电的情况下的放电路径长度,而在表面闪络的情况下,它与放电初始电压的平方相反。基于对基本电极配置的数据库,我们提出了一种真空断续器(VI)中的放电模式的诊断方法。在本文中,我们将诊断方法应用于实际的VI模型,并验证了该方法的有效性。我们测量了施加的电压和带电压分频器的屏蔽电位和具有高频电流互感器的放电电流。我们还通过数码相机捕获了放电的静止图像,以验证VI模型中的放电路径,具有观察光圈。通过改变VI模型中的电极配置,我们观察了各种放电模式,例如,各种放电模式。触点之间的间隙放电,通过屏蔽的固体绝缘体上的表面闪光装置,以及它们的组合。实验结果表明,我们成功地诊断了高于90%的有效性的放电模式。

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