Title :
Influence of grounded back electrode on AC creepage breakdown
Author :
Jiajun Liu ; Karady, George ; Alamer, Hassan ; Alhabib, Ahmad ; Qixing Yan
Author_Institution :
Sch. of Electr., Arizona State Univ., Tempe, AZ, USA
Abstract :
Solid insulation using back electrodes has been adopted in various types of electrical equipment. This paper investigates the impact of back electrode on solid insulation AC creepage discharge characteristics. Breakdown voltages at different gap distances are obtained via experiments, and electric field distribution is calculated using computer software. We compare the results between ´with´ and ´without´ use of back electrodes, and investigate the internal relationship between breakdown properties and electric field distribution. It is observed that back electrodes result in concentration of the electric field near the high voltage electrode. A larger gap distance results in an increase in the maximum tangential electric field strength. When tangential electric field strength exceeds a certain critical value, partial discharge streamers are generated. Such streamers help to lower the breakdown voltage and make the maximum electric field strength less than expected value.
Keywords :
electric fields; electrodes; insulation; overvoltage protection; partial discharges; AC creepage breakdown; AC creepage discharge characteristics; breakdown properties; breakdown voltages; electric field distribution; electrical equipment; gap distances; grounded back electrode; high voltage electrode; maximum tangential electric field strength; partial discharge streamers; solid insulation; Discharges (electric); Electric fields; Electrodes; Insulation; Partial discharges; Solids; Back electrode; creepage breakdown; electric field; partial discharge streamer; solid insulation;
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
DOI :
10.1109/TDEI.2013.6633721