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Investigation of the Influence of Overvoltage, Auxiliary Glow Current and Relaxation Time on the Electrical Breakdown Time Delay Distributions in Neon

✍ Scribed by Č. A. Maluckov; J. P. Karamarković; M. K. Radović


Publisher
John Wiley and Sons
Year
2005
Tongue
English
Weight
226 KB
Volume
45
Category
Article
ISSN
0005-8025

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✦ Synopsis


Electrical breakdown in neon, time delay distribution, Convolution model for time delay distribution, Monte-Carlo method, statistical time delay, formative time delay. PACS 52.80.Hc, 02.50.Ng Results of the statistical analysis of the electrical breakdown time delay for neon-filled tube at 13.3 mbar are presented in this paper. Experimental distributions of the breakdown time delay were established on the basis of 200 successive and independent measurements, for different overvoltages, relaxation times and auxiliary glows. Obtained experimental distributions deviate from usual exponential distribution. Breakdown time delay distributions are numerically generated, using Monte-Carlo method, as the compositions of the two independent random variables with an exponential and a Gaussian distribution. Theoretical breakdown time delay distribution is obtained from the convolution of the exponential and Gaussian distribution. Performed analysis shows that the crucial parameter that determines the complex structure of time delay is the overvoltage and if it is of the order of few percentage, then distribution of time delay must be treated as an convolution of two random variables.


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