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VFT performance of a 180/110 mm co-axial gap in SF/sub 6/ up to 4 bar absolute

机译:vft性能为180/110 mm的SF / SUB 6 /最多4巴绝对的共轴间隙

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Disconnector switch operation in GIS generates VFT voltages in the system. It is important, for insulation co-ordination purposes, to obtain accurate VFT V-t data for typical gap geometries found in GLS. This paper presents experimentally obtained VFT V-t data for a 180/110 mm co-axial gap. The VFT has a time to first peak of 35 ns and a oscillation frequency of 13.6 MHz. Due to the location of the voltage divider in a compartment adjacent to the gap, a correction factor of 1.1 is used to relate the measured breakdown voltage to that in the gap. Positive polarity VFT V-t data is presented for 1, 2, 3 and 4 bar absolute and negative polarity VFT data for 3 and 4 bar absolute. Two methods of generating the VFT's are used. The first is to power up the test transformer at power frequency. The second is to generate a switching impulse by discharging a capacitor into the primary of the test transformer.
机译:在GIS中断开开关操作在系统中产生VFT电压。对于绝缘协调目的,重要的是,获得GLS中发现的典型间隙几何形状的准确VFT V-T数据。本文提出了实验获得的VFT V-T数据,用于180/110mm的共轴间隙。 VFT的时间为35 ns的第一峰值和13.6 MHz的振荡频率。由于邻近间隙附近的隔室中的分压器的位置,使用1.1的校正因子来将测量的击穿电压与间隙中的校正电压相关联。对于3和4巴绝对表示,正极性VFT V-T数据呈现为1,2,3和4巴绝对和负极性VFT数据。使用两种生成VFT的方法。首先是在功率频率下向测试变压器上电。第二代是通过将电容器放入测试变压器的主电容器来生成切换脉冲。

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