DocumentCode :
63619
Title :
Experimental study on conduction current of positive nanosecond-pulse diffuse discharge at atmospheric pressure
Author :
Cheng Zhang ; Tao Shao ; Hao Ma ; Dongdong Zhang ; Chengyan Ren ; Ping Yan ; Tarasenko, Victor ; Schamiloglu, Edl
Author_Institution :
Key Lab. of Power Electron. & Electr.Drives, Inst. of Electr. Eng., Beijing, China
Volume :
20
Issue :
4
fYear :
2013
fDate :
Aug-13
Firstpage :
1304
Lastpage :
1314
Abstract :
Nanosecond pulsed discharges have various discharge modes, such as corona, diffuse discharge, spark or arc. A dense diffuse discharge is particularly desirable for various applications at atmospheric pressure. In this paper, a magnetic-compression pulse generator was used to produce repetitive positive nanosecond pulses for excitation of a diffuse discharge. The output pulse of the generator had a rise time of about 25 ns and a full width at half maximum of 40 ns. Electrical characteristics of the diffuse discharge were studied by measuring its voltage and current waveforms, as well as images of the discharge. The conduction current was calculated by the measured voltage and current, which was a true discharge current. The experimental results show that a stable diffuse discharge could be obtained at atmospheric pressure, and the conduction current was unipolar and had similar amplitude of several amperes under our experimental condition, which has the similar amplitude with the displacement current. Furthermore, the air gap spacing and pulse repetition frequency (PRF) affected the intensity and mode transition of the diffuse discharge. The conduction current increased with the PRF but decreased with the air gap spacing. Therefore, the diffuse discharge was likely available under some conditions of proper air gap, high PRF with positive pulse.
Keywords :
air gaps; atmospheric pressure; electric current measurement; glow discharges; pulse generators; voltage measurement; PRF; air gap spacing; atmospheric pressure; conduction current; current waveforms; diffuse discharge; magnetic compression pulse generator; nanosecond pulsed discharges; pulse repetition frequency; repetitive positive nanosecond pulses; unipolar; voltage waveforms; Corona; Current measurement; Discharges (electric); Displacement measurement; Electrodes; Plasmas; Voltage measurement; Diffuse discharge; atmospheric pressure air; conduction current; magnetic compression generator; repetitive nanosecond pulses;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2013.6571449
Filename :
6571449
Link To Document :
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