DocumentCode :
3010577
Title :
Frequency domain analysis of electromagnetic wave radiated from partial discharge
Author :
Zhu Chaojie ; Yin Yi ; Zhang Ziyang ; Lu Yuncai
fYear :
2012
fDate :
23-27 Sept. 2012
Firstpage :
794
Lastpage :
797
Abstract :
Detecting ultra-high frequency (UHF) signal method is becoming more and more popular in the area of monitoring partial discharge (PD) in power transformers. In order to learn the characteristics of the signal, we should pay attention to the frequency spectrum of electromagnetic (EM) wave, which may be influenced by power transformers´ inner structures, such as core and winding. In this paper, both with obstacle standing in the propagation way or not, the frequency spectrum of UHF signals radiated from PD source was simulated and compared. It´s concluded that, for EM waves radiated from the same PD source, their frequency spectrums are different because of obstacle. In addition, the inner structure of transformer changes the cavity resonance frequency, which may influence frequency spectrum of UHF signals. In order to investigate the mechanism, the resonance frequencies both in situations of removing and setting the core are simulated and compared. Simulation results indicate that resonance frequency changes when there is one core in tank.
Keywords :
UHF measurement; UHF radio propagation; frequency-domain analysis; partial discharge measurement; power transformers; signal detection; EM wave; PD monitoring; PD source; UHF signal detection; UHF signal method; cavity resonance frequency; electromagnetic wave; frequency spectrum; frequency-domain analysis; partial discharge monitoring; power transformer inner structures; transformer core; transformer winding; ultrahigh frequency signal method; Electric fields; Frequency domain analysis; Partial discharges; Power transformers; Resonant frequency; Transformer cores; Windings; cavity resonance frequency; frequency spectrum; partial discharge;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Condition Monitoring and Diagnosis (CMD), 2012 International Conference on
Conference_Location :
Bali
Print_ISBN :
978-1-4673-1019-2
Type :
conf
DOI :
10.1109/CMD.2012.6416267
Filename :
6416267
Link To Document :
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