DocumentCode
1050750
Title
Condition assessment of distribution PILC cables from electrical, chemical, and dielectric measurements
Author
Cherukupalli, Sudhakar ; Buchholz, Vern ; Colwell, Martin ; Crine, Jean-Pierre ; Keefe, Robert J.
Author_Institution
BC Hydro, Vancouver, BC, Canada
Volume
20
Issue
4
fYear
2004
Firstpage
6
Lastpage
12
Abstract
A study was conducted to evaluate some new diagnostic techniques enabling users to effectively manage their paper-insulated, lead-covered (PILC) cable assets. The objective is to present the results obtained with four diagnostic techniques designed for use on in-service cables, but used only to a limited extent on PILC cables. These techniques are LIpATEST leakage current test method, isothermal relaxation current (IRC), return voltage method (RVM), and dielectric spectroscopy. In addition, the AC breakdown strength of the cable was also measured. The differences between the titration measurements and the predictions made by AC breakdown and the non-destructive techniques, such as RVM and dielectric spectroscopy, were noted with specific reference to moisture content in the cables. The different diagnostic techniques used in the study gave a reasonably consistent and coherent evaluation of the insulation condition of several field-aged PILC cables. The moisture content deduced from RVM and dielectric spectroscopy does not agree with Karl-Fischer titration of the same samples. It is suggested that aging induces more detrimental polarization processes in the cable oil, whose impact on electrical properties is still unknown but appears to be much more influential than moisture for the cables tested. The results confirm a previous suggestion that PILC cables kept under load are not significantly affected by water ingress.
Keywords
dielectric measurement; electric breakdown; leakage currents; power cable insulation; power cable testing; AC breakdown strength; LIpATEST leakage current test method; PILC cable distribution; chemical measurements; condition assessment; detrimental polarization processes; diagnostic techniques; dielectric measurements; dielectric spectroscopy; electrical measurements; isothermal relaxation current; lead-covered cable assets; paper-insulated cables; return voltage method; Asset management; Cables; Chemicals; Dielectric measurements; Electrochemical impedance spectroscopy; Isothermal processes; Leakage current; Moisture; Testing; Voltage;
fLanguage
English
Journal_Title
Electrical Insulation Magazine, IEEE
Publisher
ieee
ISSN
0883-7554
Type
jour
DOI
10.1109/MEI.2004.1318834
Filename
1318834
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