It is shown that under sinusoidal regime, at 50 Hz, measurements highlighted the inception of PD above PDIV level, while that was not the case for lowest test frequency (0.1 Hz), mostly due to the gradual reduction of repetition rate. Measurements under a cosine rectangular waveform were not able to highlight the inception of PD activity, which might indicate that this kind of waveform is unsuitable for tan(delta) measurements. On the whole,.tand can be a quantity that is affected by the inception of PD mostly at industrial frequency, while one could expect significant changes of the values of this quantity under VLF only on the presence of large PD phenomena. In other words, VLF tests detect an increase of Delta tan delta with applied voltage, this may be likely addressable to lossy polarization mechanisms or conduction rather than PD inception.

Seri, P., Berardi, G., Albertini, M., Bononi, S.F., Haney, J., Tonyali, K., et al. (2022). Impact of partial discharges on MV cable dissipation factor varying supply frequency and waveshape. 345 E 47TH ST, NEW YORK, NY 10017 USA : IEEE [10.1109/ceidp55452.2022.9985378].

Impact of partial discharges on MV cable dissipation factor varying supply frequency and waveshape

Seri, P.;Montanari, G. C.
2022

Abstract

It is shown that under sinusoidal regime, at 50 Hz, measurements highlighted the inception of PD above PDIV level, while that was not the case for lowest test frequency (0.1 Hz), mostly due to the gradual reduction of repetition rate. Measurements under a cosine rectangular waveform were not able to highlight the inception of PD activity, which might indicate that this kind of waveform is unsuitable for tan(delta) measurements. On the whole,.tand can be a quantity that is affected by the inception of PD mostly at industrial frequency, while one could expect significant changes of the values of this quantity under VLF only on the presence of large PD phenomena. In other words, VLF tests detect an increase of Delta tan delta with applied voltage, this may be likely addressable to lossy polarization mechanisms or conduction rather than PD inception.
2022
Annual Report - Conference on Electrical Insulation and Dielectric Phenomena, CEIDP
316
319
Seri, P., Berardi, G., Albertini, M., Bononi, S.F., Haney, J., Tonyali, K., et al. (2022). Impact of partial discharges on MV cable dissipation factor varying supply frequency and waveshape. 345 E 47TH ST, NEW YORK, NY 10017 USA : IEEE [10.1109/ceidp55452.2022.9985378].
Seri, P.; Berardi, G.; Albertini, M.; Bononi, S. Franchi; Haney, J.; Tonyali, K.; Montanari, G. C.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/964481
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