Title :
Condition monitoring of overhead line insulator by measuring surface leakage current
Author :
Banik, A. ; Dalai, S. ; Chatterjee, B.
Author_Institution :
Dept. of Electr. Eng., Jadavpur Univ., Kolkata, India
Abstract :
Transmission and distribution power network commonly use porcelain insulator for the isolation i.e. insulation between line conductors and supporting structure. Most of the insulators are mounting in open-air applications. So, gradually contamination is deposited in the surface of the insulator and reduced the voltage withstand capability of the insulator. This voltage withstands capability of the insulator measured in terms of surface flashover. This hampers the reliable operation of the power network. Hence condition monitoring of insulator is needed in order to maintain smooth and uninterrupted power supply. Surface leakage current of the insulator provides the meaningful information about the surface contamination as well as flashover voltage level of the polluted insulators. Considering the above mentioned fact, an experimental setup has been made in the laboratory for recording the leakage current of porcelain insulators. Using this setup, surface leakage current of an 11 kV Disc insulator has been measured in contaminated condition.
Keywords :
condition monitoring; electric current measurement; flashover; insulator contamination; leakage currents; overhead line conductors; porcelain insulators; power overhead lines; uninterruptible power supplies; condition monitoring; disc insulator; distribution power network; flashover voltage level; line conductors; overhead line insulator; polluted insulators; porcelain insulator; supporting structure; surface contamination; surface flashover; surface leakage current measurement; transmission power network; uninterrupted power supply; voltage 11 kV; voltage withstand capability; Current measurement; Flashover; Insulators; Leakage currents; Pollution measurement; Surface contamination; Voltage measurement; Condition monitoring; Flashover voltage; Porcelain insulator; Surface leakage current;
Conference_Titel :
India Conference (INDICON), 2014 Annual IEEE
Conference_Location :
Pune
Print_ISBN :
978-1-4799-5362-2
DOI :
10.1109/INDICON.2014.7030540