DocumentCode :
3012758
Title :
Location of water tree degradation in a long polymeric cable line
Author :
Myong Hwan Kim ; Hozumi, N. ; Murakami, Yasutaka ; Nagao, Masaru ; Kurihara, Takashi ; Okamoto, Tatsuaki ; Tsuji, Takao ; Uchida, Kazunori
Author_Institution :
Toyohashi Univ. of Technol., Toyohashi, Japan
fYear :
2012
fDate :
23-27 Sept. 2012
Firstpage :
141
Lastpage :
144
Abstract :
Water treeing is a degradation mode of power cable with polymeric insulation. A water tree is composed of small droplets filled with water. As the conductivity in water tree is very high, it leads to dielectric breakdown when it grows up. As inside of the water tree is filled with trap sites, it is polarized with a certain distribution of relaxation time when a DC poling voltage is applied. Although its depolarization process after removing the poling voltage is determined by ambient temperature, applying a "depolarizing voltage" with the opposite polarity can accelerate the process. If a short pulse propagating through the cable is employed as a depolarization voltage, we may locate the water tree through looking at the time-resolved pulse response. This would lead to a diagnosing method with spatial resolution. In order to retain 100 m of spatial resolution, the response should be as sharp as 1 μs. As a preliminary study, a coaxial communication cable was aged to form water trees. A DC poling voltage was applied followed by a pulse voltage with opposite polarity. The rising time of the pulse was several hundreds of microseconds. A sharp pulse current response with 50 μs in width was observed, suggesting that a rapid depolarization took place. No such response was seen when the cable specimen was not aged. We concluded that the technique is quite feasible. As the response was found to be as quick as several microseconds, an experiment using 405 m-long cable, with 5 m of degraded length in the middle, was performed. It was shown that the degraded point was successfully located.
Keywords :
XLPE insulation; coaxial cables; dielectric polarisation; power cable insulation; trees (electrical); DC poling voltage; coaxial communication cable; conductivity; depolarization voltage; dielectric breakdown; long polymeric cable line; polymeric insulation; power cable; spatial resolution; time-resolved pulse response; water tree degradation location; Cable shielding; Coaxial cables; Current measurement; Degradation; Power cables; Trees - insulation; Voltage measurement; diagnosis; power cable; residual charge method; water tree;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Condition Monitoring and Diagnosis (CMD), 2012 International Conference on
Conference_Location :
Bali
Print_ISBN :
978-1-4673-1019-2
Type :
conf
DOI :
10.1109/CMD.2012.6416395
Filename :
6416395
Link To Document :
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