Title :
Time-frequency analysis of VHF wave form for precise location of partial discharge in small-scale high voltage apparatuses
Author :
Lee, C.K. ; Muramoto, Y. ; Hozumi, N. ; Nagao, M.
Author_Institution :
Dept. of Electr. Eng., Toyohashi Univ. of Technol., Japan
Abstract :
This study is aimed to develop the technique for locating partial discharges in small-scale high voltage apparatuses like rotating machines and transformers. Conventionally for such a purpose, discharge signals detected at different points are compared in time domain to determine the time lag. However, for small-scale apparatuses, a high precision of the location is required. In addition, as the inspection is usually performed in a small room, the waveform may be highly interfered by reflected waves. In the experiment, radio frequency signals in VHF range radiated from the discharge point were carefully acquired the time lag between these signals was determined by more than two whip antennas. Direct comparison in time domain was not suitable since the signals were not completely the same. Time-frequency analysis was then applied to the waveform. Specific part of the waveform was extracted by using a proper window function and subjected to phase analysis. Location of the discharge point was performed using the phase spectrum. It was proved that the technique was suitable to avoid the influence of the interference by the reflected waveform. The precision of location was as good as several centimeters.
Keywords :
VHF antennas; delays; electric machines; high-frequency discharges; inspection; interference (signal); partial discharges; power transformers; signal detection; time-frequency analysis; waveform analysis; VHF wave range; inspection; partial discharge precise location; phase analysis; phase spectrum; radiofrequency signal; reflected waveform interference; reflected waves; rotating machines; signal detection; small-scale high voltage apparatuses; time lag; time-frequency analysis; transformers; whip antennas; window function; Fault location; Inspection; Partial discharges; RF signals; Radio frequency; Rotating machines; Signal detection; Time frequency analysis; Transformers; Voltage;
Conference_Titel :
Properties and Applications of Dielectric Materials, 2003. Proceedings of the 7th International Conference on
Print_ISBN :
0-7803-7725-7
DOI :
10.1109/ICPADM.2003.1218422