This paper presents a method to determine travel time, attenuation and frequency characteristics of partial discharge signals travelling along a power cable. The method is based on the Advanced Transient Program. Laboratory tests performed on 13 kV EPR insulated cable are used to validate simulation results. The model developed here will be used in forthcoming papers to assess partial discharge detection sensitivity as a function of cable length and detector bandwidth. Here, some preliminary results are presented.

A. Cavallini, G.C. Montanari, S. Chandrasekar (2007). Prediction of PD pulse propagation in polymeric cables through computer simulation. PISCATAWAY : IEEE.

Prediction of PD pulse propagation in polymeric cables through computer simulation

CAVALLINI, ANDREA;MONTANARI, GIAN CARLO;
2007

Abstract

This paper presents a method to determine travel time, attenuation and frequency characteristics of partial discharge signals travelling along a power cable. The method is based on the Advanced Transient Program. Laboratory tests performed on 13 kV EPR insulated cable are used to validate simulation results. The model developed here will be used in forthcoming papers to assess partial discharge detection sensitivity as a function of cable length and detector bandwidth. Here, some preliminary results are presented.
2007
Proceedings of the 9th International Conference on Solid Dielectrics (ICSD)
581
584
A. Cavallini, G.C. Montanari, S. Chandrasekar (2007). Prediction of PD pulse propagation in polymeric cables through computer simulation. PISCATAWAY : IEEE.
A. Cavallini; G.C. Montanari; S. Chandrasekar;
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/56517
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