DocumentCode :
606078
Title :
Modelling of partial discharge behaviour in a cavity within the solid dielectrics
Author :
Seenivasagam, L. ; Maheswari, R.V. ; Subburaj, P.
Author_Institution :
Dept. of EEE, Nat. Eng. Coll., Kovilpatti, India
fYear :
2013
fDate :
20-21 March 2013
Firstpage :
618
Lastpage :
624
Abstract :
The identification and performance assessment of an insulation system within high voltage equipment is very significant. The central phenomenon to be subjected in insulation diagnostics and performance assessment is partial discharge (PD) measurement. Insulation degradation due to various physical factors such as voids, cracks, ageing and premature failure present within it is always linked to PD occurrence. Even though PD does not root immediate insulation failure and result in breakdown, it indicates the presence of an imperfection within the insulation which can affect its long term performance. The intention of this effort is to design and simulate the PD activity inside the cavity of various solid dielectric materials namely, Polycarbonate, Silicone Rubber and Silicon Carbide insulation exposed to high electric fields in various shapes of cavities (cylindrical, spherical and unsymmetrical) using a industrial simulation tool named COMSOL (Communication Solution) Multiphysics, and interface it with MATLAB. In this work, the simulations of PD activity within cavities in the insulation have been performed for different shapes and position of voids present in various insulating materials.
Keywords :
cracks; dielectric materials; partial discharges; plasma diagnostics; plasma simulation; polymer insulators; silicone rubber insulators; voids (solid); COMSOL Multiphysics; Communication Solution; MATLAB; PD activity; PD occurrence; SiC; ageing; cavity shapes; cracks; cylindrical shape; high electric field; high voltage equipment; industrial simulation tool; insulation degradation; insulation diagnostics; insulation failure; insulation system; partial discharge behaviour modelling; partial discharge measurement; performance assessment; polycarbonate insulation; premature failure; silicon carbide insulation; silicone rubber insulation; solid dielectric material cavity; spherical shape; unsymmetrical shape; void position; Cavity resonators; Geometry; MATLAB; Mathematical model; Partial discharge; Polycarbonate; Silicone Rubber and Silicon Carbide Insulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits, Power and Computing Technologies (ICCPCT), 2013 International Conference on
Conference_Location :
Nagercoil
Print_ISBN :
978-1-4673-4921-5
Type :
conf
DOI :
10.1109/ICCPCT.2013.6528834
Filename :
6528834
Link To Document :
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