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Partial discharge characteristics over SF6/epoxy interfaces under impulse voltage

Dielectrics and Electrical Insulation, IEEE Transactions(2013)

Cited 26|Views38
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Abstract
Gas insulated switchgears (GIS) have been widely used due to their high reliability, low maintenance and compact size. The field experiment is an important step to ensure the safety of GIS. The AC withstand voltage test and its corresponding partial discharge (PD) measurement are inadequate for the detection of all the hidden flaws in GIS. Such inadequacy can be compensated by additional impulse withstand voltage test and its PD detection measurement. This paper reports on experiments to study surface discharge over SF6/epoxy under impulse voltage. The TJ (triple-junction) model was used to study the characteristic of partial discharge (PD). The PD signals under four types of impulse voltages were detected by electrical methods. The 50% probability PD inception voltage (PDIV50), time lags and maximum discharge magnitude were analyzed as a function of gas pressure. The PD characteristics under AC voltage were investigated for comparison. The results indicate that the PD signals under impulse voltage can be detected using electrical method, the number of discharges under oscillating impulse voltage was significantly larger, which was due to the influence of source oscillation. The oscillating lightning impulse has the lowest impulse ratio and it is recommended as the best test waveform choice for the field impulse withstand test with PD detection.
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Key words
triple-junction model,PD detection measurement,source oscillation,SF6-epoxy interfaces,sf6 gas,PD inception voltage,impulse testing,gas pressure,gas insulated switchgear,partial discharge measurement,Partial discharge,GIS safety,SF6 gas,impulse voltage,partial discharge,field impulse withstand test,surface discharges,pd inception voltage,oscillating impulse voltage,AC withstand voltage test,epoxy insulation,SF6 insulation,surface discharge,discharge magnitude,impulse ratio
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