Title :
Acoustic-electrical based detection system for partial discharge localization of GIS
Author :
Miao Peiqing ; Li Xiuwei ; Hu Yue ; Sheng Gehao ; Ye Haifeng ; Jiang Xiuchen
Author_Institution :
Shandong Electr. Power Res. Inst., Shandong Electr. Power Co., Jinan, China
Abstract :
A portal acoustic-electrical system for partial discharge localization of GIS is developed, which can be used for multi-channel acoustic-electrical detection of ultrahigh-frequency, ultrahigh-current and ultrasonic signals generated by partial discharge of GIS. The system program, developed based on LabVIEW, is able to continuously capture, sample and store pulse waveforms of partial discharge signals. It can also calculate the phase of discharge pulse, and analyze time-frequency & amplitude-phase distribution of partial discharge signals. By calculating time difference between ultrahigh frequency signals & ultrasonic signals of partial discharge or between ultrahigh frequency signal and ultrasonic signal by multiple-channel detection, this portable acoustic-electrical system can achieve localization of partial discharge. Our system has been applied in partial discharge localization at several 220kV and 500kV GIS substations. The detection results verified the performance of this portable acoustic-electrical detection system.
Keywords :
gas insulated switchgear; partial discharges; power engineering computing; virtual instrumentation; GIS substations; LabVIEW; acoustic-electrical based detection system; amplitude-phase distribution; discharge pulse; gas insulated switch; multichannel acoustic-electrical detection; multiple-channel detection; partial discharge localization; partial discharge signals; time-frequency distribution; ultrahigh-current signals; ultrahigh-frequency signals; ultrasonic signals; voltage 220 kV; voltage 500 kV; Acoustics; Data acquisition; Data processing; Frequency synchronization; Partial discharges; Time-frequency analysis; Transducers; GIS; acoustic-electrical detection; partial discharge; portable; virtual instrument;
Conference_Titel :
Power Engineering and Automation Conference (PEAM), 2012 IEEE
Conference_Location :
Wuhan
Print_ISBN :
978-1-4577-1599-0
DOI :
10.1109/PEAM.2012.6612545