Insulation Diagnosis for XLPE Cables Using Damping Oscillating High Voltage
Toshihiro Takahashi, Tsuguhiro Takahashi, Tatsuki Okamoto
Abstract
Toshihiro Takahashi, Tsuguhiro Takahashi, Tatsuki Okamoto
Abstract
6 to 60 kV class XLPE cables are widely used and playing important roles in power distribution and transmission systems in Japan. The aging degradation is dominated by water trees in these XLPE cables. Therefore, water tree diagnosis with high precision is quite important for operation, maintenance and replaces planning of these XLPE cables. The authors have been investigating the applicability of the Damping oscillating high voltage (DOHV) to the water tree detection as well as insulation diagnosis for these XLPE cables. This paper firstly proposes the nondestructive insulation diagnosis using DOHV application. Then, some empirical results obtained by its application to water-tree degraded XLPE cable are discussed.
OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
6 to 60 kV class XLPE cables are widely used and playing important roles in power distribution and transmission systems in Japan. The aging degradation is dominated by water trees in these XLPE cables. Therefore, water tree diagnosis with high precision is quite important for operation, maintenance and replaces planning of these XLPE cables. The authors have been investigating the applicability of the Damping oscillating high voltage (DOHV) to the water tree detection as well as insulation diagnosis for these XLPE cables. This paper firstly proposes the nondestructive insulation diagnosis using DOHV application. Then, some empirical results obtained by its application to water-tree degraded XLPE cable are discussed.
Key concepts: Voltage, Materials science, Power cable, High voltage, Tree (set theory), Electrical engineering, Degradation (telecommunications), Transmission (telecommunications)