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An electric anode with high pulsed current and a negative electrode are adopted to form a lightning impulse system with duration time of 200 ms for simulation of the lightning stroke process.
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To gain the dielectric capability of LN2 cryogenic cooling system, lightning impulse was induced in sphere plane electrode systems which have six different diameters of sphere electrode.
The basic insulation level (BIL) are typically 3 to 5 times of the system voltage for lightning impulse on power equipments according to IEEE Std C62.82.1 [34].
The experimental results show that the electrical breakdown characteristics under lightning impulse voltage are affected by the gap length between electrode systems, the size of electrodes, and the field utilization factors.
The results provide useful information for the design and the behavior of a grounding system, encased either in bentonite or in conductive concrete under lightning impulse currents, as well as for the protection measures of installations from lightning strokes.
In this study, the lightning impulse breakdown tests on gaseous insulation media are conducted by using sphere-to-plane electrode systems made of stainless steel.
A 1.2/50 μs lightning impulse waveform was used during testing.
This paper investigates the dielectric capability of liquid nitrogen (LN2) to withstand lightning impulse.
Finally, the fabricated condenser bushing has been tested by applying lightning impulse and AC overvoltage test.
Also, the lightning impulse breakdown voltage tests on gaseous insulation media according to various pressures are performed.
The lightning impulse current measurement characteristics of the CVTD and Rogowski coil were examined.
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