Title :
In-service location of partial discharge sites in polymeric distribution cables using capacitive and inductive probes
Author :
Morin, R. ; Bartnikas, R. ; Lessard, G.
Author_Institution :
Inst. de Recherche, Hydro-Quebec, Varennes, Que., Canada
Abstract :
The partial discharge (PD) site location capabilities of capacitive and inductive probes were compared, employing 25 kV XLPE insulated distribution cable specimens. The measurements were carried out primarily in a laboratory environment using a model distribution system, which consisted of different spliced cable lengths interconnected via circuit breakers and transformers; limited preliminary tests were also made under high ambient noise conditions in substations where the open-tray installations of cables provided free access to the surface of the cables to permit scanning with the probe sensors. All tests were performed on fully energized cables. The capacitive probes were found to perform adequately well, provided the probes could be inserted beneath the helically wound concentric neutral of the cable specimens; they functioned exceptionally well with unshielded splice joints. The inductive probes, which were applied in the form of a coil over the cable, had the decided advantage in that the detection procedure could be performed directly over the concentric neutral of the cable. However, their discharge site locating capabilities were rendered virtually ineffective in the presence of high ambient interference in substations
Keywords :
XLPE insulation; capacitive sensors; fault location; insulation testing; partial discharge measurement; power cable testing; probes; 25 kV; XLPE insulated distribution cable specimens; capacitive probes; circuit breakers; concentric neutral; fully energized cables; helically wound concentric neutral; high ambient noise conditions; in-service PD site location; inductive probes; model distribution system; open-tray installations; polymeric distribution cables; spliced cable lengths; substations; transformers; unshielded splice joints; Cable insulation; Circuit testing; Partial discharge measurement; Partial discharges; Polymers; Power cable insulation; Power cables; Power transformer insulation; Probes; Substations;
Conference_Titel :
Transmission and Distribution Conference, 1999 IEEE
Conference_Location :
New Orleans, LA
Print_ISBN :
0-7803-5515-6
DOI :
10.1109/TDC.1999.755327